Analysis of Λ b 0 $$ {\Lambda}_b^0 $$ → pK − μ + μ − decays
Abstract The differential branching fraction and angular coefficients of Λ b 0 $$ {\Lambda}_b^0 $$ → pK − μ + μ − decays are measured in bins of the dimuon mass squared and dihadron mass. The analysis is performed using a data set corresponding to 9 fb −1 of integrated luminosity collected with the...
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Format: | Article |
Language: | English |
Published: |
SpringerOpen
2024-12-01
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Series: | Journal of High Energy Physics |
Subjects: | |
Online Access: | https://doi.org/10.1007/JHEP12(2024)147 |
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author | The LHCb collaboration R. Aaij A. S. W. Abdelmotteleb C. Abellan Beteta F. Abudinén T. Ackernley A. A. Adefisoye B. Adeva M. Adinolfi P. Adlarson C. Agapopoulou C. A. Aidala Z. Ajaltouni S. Akar K. Akiba P. Albicocco J. Albrecht F. Alessio M. Alexander Z. Aliouche P. Alvarez Cartelle R. Amalric S. Amato J. L. Amey Y. Amhis L. An L. Anderlini M. Andersson A. Andreianov P. Andreola M. Andreotti D. Andreou A. Anelli D. Ao F. Archilli M. Argenton S. Arguedas Cuendis A. Artamonov M. Artuso E. Aslanides R. Ataíde Da Silva M. Atzeni B. Audurier D. Bacher I. Bachiller Perea S. Bachmann M. Bachmayer J. J. Back P. Baladron Rodriguez V. Balagura W. Baldini L. Balzani H. Bao J. Baptista de Souza Leite C. Barbero Pretel M. Barbetti I. R. Barbosa R. J. Barlow M. Barnyakov S. Barsuk W. Barter M. Bartolini J. Bartz J. M. Basels S. Bashir G. Bassi B. Batsukh P. B. Battista A. Bay A. Beck M. Becker F. Bedeschi I. B. Bediaga N. A. Behling S. Belin V. Bellee K. Belous I. Belov I. Belyaev G. Benane G. Bencivenni E. Ben-Haim A. Berezhnoy R. Bernet S. Bernet Andres A. Bertolin C. Betancourt F. Betti J. Bex Ia. Bezshyiko J. Bhom M. S. Bieker N. V. Biesuz P. Billoir A. Biolchini M. Birch F. C. R. Bishop A. Bitadze A. Bizzeti T. Blake F. Blanc J. E. Blank S. Blusk V. Bocharnikov J. A. Boelhauve O. Boente Garcia T. Boettcher A. Bohare A. Boldyrev C. S. Bolognani R. Bolzonella N. Bondar A. Bordelius F. Borgato S. Borghi M. Borsato J. T. Borsuk S. A. Bouchiba M. Bovill T. J. V. Bowcock A. Boyer C. Bozzi A. Brea Rodriguez N. Breer J. Brodzicka A. Brossa Gonzalo J. Brown D. Brundu E. Buchanan A. Buonaura L. Buonincontri A. T. Burke C. Burr J. S. Butter J. Buytaert W. Byczynski S. Cadeddu H. Cai A. C. Caillet R. Calabrese S. Calderon Ramirez L. Calefice S. Cali M. Calvi M. Calvo Gomez P. Camargo Magalhaes J. I. Cambon Bouzas P. Campana D. H. Campora Perez A. F. Campoverde Quezada S. Capelli L. Capriotti R. Caravaca-Mora A. Carbone L. Carcedo Salgado R. Cardinale A. Cardini P. Carniti L. Carus A. Casais Vidal R. Caspary G. Casse J. Castro Godinez M. Cattaneo G. Cavallero V. Cavallini S. Celani D. Cervenkov S. Cesare A. J. Chadwick I. Chahrour M. Charles Ph. Charpentier E. Chatzianagnostou M. Chefdeville C. Chen S. Chen Z. Chen A. Chernov S. Chernyshenko X. Chiotopoulos V. Chobanova S. Cholak M. Chrzaszcz A. Chubykin V. Chulikov P. Ciambrone X. Cid Vidal G. Ciezarek P. Cifra P. E. L. Clarke M. Clemencic H. V. Cliff J. Closier C. Cocha Toapaxi V. Coco J. Cogan E. Cogneras L. Cojocariu P. Collins T. Colombo M. C. Colonna A. Comerma-Montells L. Congedo A. Contu N. Cooke I. Corredoira A. Correia G. Corti J. J. Cottee Meldrum B. Couturier D. C. Craik M. Cruz Torres E. Curras Rivera R. Currie C. L. Da Silva S. Dadabaev L. Dai X. Dai E. Dall’Occo J. Dalseno C. D’Ambrosio J. Daniel A. Danilina P. d’Argent A. Davidson J. E. Davies A. Davis O. De Aguiar Francisco C. De Angelis F. De Benedetti J. de Boer K. De Bruyn S. De Capua M. De Cian U. De Freitas Carneiro Da Graca E. De Lucia J. M. De Miranda L. De Paula M. De Serio P. De Simone F. De Vellis J. A. de Vries F. Debernardis D. Decamp V. Dedu S. Dekkers L. Del Buono B. Delaney H.-P. Dembinski J. Deng V. Denysenko O. Deschamps F. Dettori B. Dey P. Di Nezza I. Diachkov S. Didenko S. Ding L. Dittmann V. Dobishuk A. D. Docheva C. Dong A. M. Donohoe F. Dordei A. C. dos Reis A. D. Dowling W. Duan P. Duda M. W. Dudek L. Dufour V. Duk P. Durante M. M. Duras J. M. Durham O. D. Durmus A. Dziurda A. Dzyuba S. Easo E. Eckstein U. Egede A. Egorychev V. Egorychev S. Eisenhardt E. Ejopu L. Eklund M. Elashri J. Ellbracht S. Ely A. Ene E. Epple J. Eschle S. Esen T. Evans F. Fabiano L. N. Falcao Y. Fan B. Fang L. Fantini M. Faria K. Farmer D. Fazzini L. Felkowski M. Feng M. Feo A. Fernandez Casani M. Fernandez Gomez A. D. Fernez F. Ferrari F. Ferreira Rodrigues M. Ferrillo M. Ferro-Luzzi S. Filippov R. A. Fini M. Fiorini M. Firlej K. L. Fischer D. S. Fitzgerald C. Fitzpatrick T. Fiutowski F. Fleuret M. Fontana L. F. Foreman R. Forty D. Foulds-Holt V. Franco Lima M. Franco Sevilla M. Frank E. Franzoso G. Frau C. Frei D. A. Friday J. Fu Q. Führing Y. Fujii T. Fulghesu E. Gabriel G. Galati M. D. Galati A. Gallas Torreira D. Galli S. Gambetta M. Gandelman P. Gandini B. Ganie H. Gao R. Gao T. Q. Gao Y. Gao Y. Gao Y. Gao M. Garau L. M. Garcia Martin P. Garcia Moreno J. García Pardiñas K. G. Garg L. Garrido C. Gaspar R. E. Geertsema L. L. Gerken E. Gersabeck M. Gersabeck T. Gershon S. Ghizzo Z. Ghorbanimoghaddam L. Giambastiani F. I. Giasemis V. Gibson H. K. Giemza A. L. Gilman M. Giovannetti A. Gioventù L. Girardey P. Gironella Gironell C. Giugliano M. A. Giza E. L. Gkougkousis F. C. Glaser V. V. Gligorov C. Göbel E. Golobardes D. Golubkov A. Golutvin A. Gomes S. Gomez Fernandez F. Goncalves Abrantes M. Goncerz G. Gong J. A. Gooding I. V. Gorelov C. Gotti J. P. Grabowski L. A. Granado Cardoso E. Graugés E. Graverini L. Grazette G. Graziani A. T. Grecu L. M. Greeven N. A. Grieser L. Grillo S. Gromov C. Gu M. Guarise L. Guerry M. Guittiere V. Guliaeva P. A. Günther A.-K. Guseinov E. Gushchin Y. Guz T. Gys K. Habermann T. Hadavizadeh C. Hadjivasiliou G. Haefeli C. Haen J. Haimberger M. Hajheidari G. Hallett M. M. Halvorsen P. M. Hamilton J. Hammerich Q. Han X. Han S. Hansmann-Menzemer L. Hao N. Harnew M. Hartmann S. Hashmi J. He F. Hemmer C. Henderson R. D. L. Henderson A. M. Hennequin K. Hennessy L. Henry J. Herd P. Herrero Gascon J. Heuel A. Hicheur G. Hijano Mendizabal D. Hill S. E. Hollitt J. Horswill R. Hou Y. Hou N. Howarth J. Hu J. Hu W. Hu X. Hu W. Huang W. Hulsbergen R. J. Hunter M. Hushchyn D. Hutchcroft M. Idzik D. Ilin P. Ilten A. Inglessi A. Iniukhin A. Ishteev K. Ivshin R. Jacobsson H. Jage S. J. Jaimes Elles S. Jakobsen E. Jans B. K. Jashal A. Jawahery V. Jevtic E. Jiang X. Jiang Y. Jiang Y. J. Jiang M. John A. John Rubesh Rajan D. Johnson C. R. Jones T. P. Jones S. Joshi B. Jost J. Juan Castella N. Jurik I. Juszczak D. Kaminaris S. Kandybei M. Kane Y. Kang C. Kar M. Karacson D. Karpenkov A. Kauniskangas J. W. Kautz M. K. Kazanecki F. Keizer M. Kenzie T. Ketel B. Khanji A. Kharisova S. Kholodenko G. Khreich T. Kirn V. S. Kirsebom O. Kitouni S. Klaver N. Kleijne K. Klimaszewski M. R. Kmiec S. Koliiev L. Kolk A. Konoplyannikov P. Kopciewicz P. Koppenburg M. Korolev I. Kostiuk O. Kot S. Kotriakhova A. Kozachuk P. Kravchenko L. Kravchuk M. Kreps P. Krokovny W. Krupa W. Krzemien O. Kshyvanskyi S. Kubis M. Kucharczyk V. Kudryavtsev E. Kulikova A. Kupsc B. K. Kutsenko D. Lacarrere P. Laguarta Gonzalez A. Lai A. Lampis D. Lancierini C. Landesa Gomez J. J. Lane R. Lane G. Lanfranchi C. Langenbruch J. Langer O. Lantwin T. Latham F. Lazzari C. Lazzeroni R. Le Gac H. Lee R. Lefèvre A. Leflat S. Legotin M. Lehuraux E. Lemos Cid O. Leroy T. Lesiak E. D. Lesser B. Leverington A. Li C. Li H. Li K. Li L. Li M. Li P. Li P.-R. Li Q. Li S. Li T. Li T. Li Y. Li Y. Li Z. Lian X. Liang S. Libralon C. Lin T. Lin R. Lindner V. Lisovskyi R. Litvinov F. L. Liu G. Liu K. Liu S. Liu W. Liu Y. Liu Y. Liu Y. L. Liu A. Lobo Salvia A. Loi J. Lomba Castro T. Long J. H. Lopes A. Lopez Huertas S. López Soliño Q. Lu C. Lucarelli D. Lucchesi M. Lucio Martinez V. Lukashenko Y. Luo A. Lupato E. Luppi K. Lynch X.-R. Lyu G. M. Ma R. Ma S. Maccolini F. Machefert F. Maciuc B. Mack I. Mackay L. M. Mackey L. R. Madhan Mohan M. J. Madurai A. Maevskiy D. Magdalinski D. Maisuzenko M. W. Majewski J. J. Malczewski S. Malde L. Malentacca A. Malinin T. Maltsev G. Manca G. Mancinelli C. Mancuso R. Manera Escalero D. Manuzzi D. Marangotto J. F. Marchand R. Marchevski U. Marconi E. Mariani S. Mariani C. Marin Benito J. Marks A. M. Marshall L. Martel G. Martelli G. Martellotti L. Martinazzoli M. Martinelli D. Martinez Santos F. Martinez Vidal A. Massafferri R. Matev A. Mathad V. Matiunin C. Matteuzzi K. R. Mattioli A. Mauri E. Maurice J. Mauricio P. Mayencourt J. Mazorra de Cos M. Mazurek M. McCann L. Mcconnell T. H. McGrath N. T. McHugh A. McNab R. McNulty B. Meadows G. Meier D. Melnychuk F. M. Meng M. Merk A. Merli L. Meyer Garcia D. Miao H. Miao M. Mikhasenko D. A. Milanes A. Minotti E. Minucci T. Miralles B. Mitreska D. S. Mitzel A. Modak R. A. Mohammed R. D. Moise S. Mokhnenko E. F. Molina Cardenas T. Mombächer M. Monk S. Monteil A. Morcillo Gomez G. Morello M. J. Morello M. P. Morgenthaler J. Moron A. B. Morris A. G. Morris R. Mountain H. Mu Z. M. Mu E. Muhammad F. Muheim M. Mulder K. Müller F. Muñoz-Rojas R. Murta P. Naik T. Nakada R. Nandakumar T. Nanut I. Nasteva M. Needham N. Neri S. Neubert N. Neufeld P. Neustroev J. Nicolini D. Nicotra E. M. Niel N. Nikitin P. Nogarolli P. Nogga C. Normand J. Novoa Fernandez G. Nowak C. Nunez H. N. Nur A. Oblakowska-Mucha V. Obraztsov T. Oeser S. Okamura A. Okhotnikov O. Okhrimenko R. Oldeman F. Oliva M. Olocco C. J. G. Onderwater R. H. O’Neil D. Osthues J. M. Otalora Goicochea P. Owen A. Oyanguren O. Ozcelik F. Paciolla A. Padee K. O. Padeken B. Pagare P. R. Pais T. Pajero A. Palano M. Palutan G. Panshin L. Paolucci A. Papanestis M. Pappagallo L. L. Pappalardo C. Pappenheimer C. Parkes B. Passalacqua G. Passaleva D. Passaro A. Pastore M. Patel J. Patoc C. Patrignani A. Paul C. J. Pawley A. Pellegrino J. Peng M. Pepe Altarelli S. Perazzini D. Pereima H. Pereira Da Costa A. Pereiro Castro P. Perret A. Perro K. Petridis A. Petrolini J. P. Pfaller H. Pham L. Pica M. Piccini L. Piccolo B. Pietrzyk G. Pietrzyk D. Pinci F. Pisani M. Pizzichemi V. Placinta M. Plo Casasus T. Poeschl F. Polci M. Poli Lener A. Poluektov N. Polukhina I. Polyakov E. Polycarpo S. Ponce D. Popov S. Poslavskii K. Prasanth C. Prouve D. Provenzano V. Pugatch G. Punzi S. Qasim Q. Q. Qian W. Qian N. Qin S. Qu R. Quagliani R. I. Rabadan Trejo J. H. Rademacker M. Rama M. Ramírez García V. Ramos De Oliveira M. Ramos Pernas M. S. Rangel F. Ratnikov G. Raven M. Rebollo De Miguel F. Redi J. Reich F. Reiss Z. Ren P. K. Resmi R. Ribatti G. R. Ricart D. Riccardi S. Ricciardi K. Richardson M. Richardson-Slipper K. Rinnert P. Robbe G. Robertson E. Rodrigues E. Rodriguez Fernandez J. A. Rodriguez Lopez E. Rodriguez Rodriguez J. Roensch A. Rogachev A. Rogovskiy D. L. Rolf P. Roloff V. Romanovskiy M. Romero Lamas A. Romero Vidal G. Romolini F. Ronchetti T. Rong M. Rotondo S. R. Roy M. S. Rudolph M. Ruiz Diaz R. A. Ruiz Fernandez J. Ruiz Vidal A. Ryzhikov J. Ryzka J. J. Saavedra-Arias J. J. Saborido Silva R. Sadek N. Sagidova D. Sahoo N. Sahoo B. Saitta M. Salomoni I. Sanderswood R. Santacesaria C. Santamarina Rios M. Santimaria L. Santoro E. Santovetti A. Saputi D. Saranin A. Sarnatskiy G. Sarpis M. Sarpis C. Satriano A. Satta M. Saur D. Savrina H. Sazak F. Sborzacchi L. G. Scantlebury Smead A. Scarabotto S. Schael S. Scherl M. Schiller H. Schindler M. Schmelling B. Schmidt S. Schmitt H. Schmitz O. Schneider A. Schopper N. Schulte S. Schulte M. H. Schune R. Schwemmer G. Schwering B. Sciascia A. Sciuccati S. Sellam A. Semennikov T. Senger M. Senghi Soares A. Sergi N. Serra L. Sestini A. Seuthe Y. Shang D. M. Shangase M. Shapkin R. S. Sharma I. Shchemerov L. Shchutska T. Shears L. Shekhtman Z. Shen S. Sheng V. Shevchenko B. Shi Q. Shi Y. Shimizu E. Shmanin R. Shorkin J. D. Shupperd R. Silva Coutinho G. Simi S. Simone N. Skidmore T. Skwarnicki M. W. Slater J. C. Smallwood E. Smith K. Smith M. Smith A. Snoch L. Soares Lavra M. D. Sokoloff F. J. P. Soler A. Solomin A. Solovev I. Solovyev R. Song Y. Song Y. Song Y. S. Song F. L. Souza De Almeida B. Souza De Paula E. Spadaro Norella E. Spedicato J. G. Speer E. Spiridenkov P. Spradlin V. Sriskaran F. Stagni M. Stahl S. Stahl S. Stanislaus E. N. Stein O. Steinkamp O. Stenyakin H. Stevens D. Strekalina Y. Su F. Suljik J. Sun L. Sun Y. Sun D. Sundfeld W. Sutcliffe P. N. Swallow K. Swientek F. Swystun A. Szabelski T. Szumlak Y. Tan M. D. Tat A. Terentev F. Terzuoli F. Teubert E. Thomas D. J. D. Thompson H. Tilquin V. Tisserand S. T’Jampens M. Tobin L. Tomassetti G. Tonani X. Tong D. Torres Machado L. Toscano D. Y. Tou C. Trippl G. Tuci N. Tuning L. H. Uecker A. Ukleja D. J. Unverzagt E. Ursov A. Usachov A. Ustyuzhanin U. Uwer V. Vagnoni V. Valcarce Cadenas G. Valenti N. Valls Canudas H. Van Hecke E. van Herwijnen C. B. Van Hulse R. Van Laak M. van Veghel G. Vasquez R. Vazquez Gomez P. Vazquez Regueiro C. Vázquez Sierra S. Vecchi J. J. Velthuis M. Veltri A. Venkateswaran M. Verdoglia M. Vesterinen D. Vico Benet P. Vidrier Villalba M. Vieites Diaz X. Vilasis-Cardona E. Vilella Figueras A. Villa P. Vincent F. C. Volle D. vom Bruch N. Voropaev K. Vos G. Vouters C. Vrahas J. Wagner J. Walsh E. J. Walton G. Wan C. Wang G. Wang J. Wang J. Wang J. Wang J. Wang M. Wang N. W. Wang R. Wang X. Wang X. Wang X. W. Wang Y. Wang Z. Wang Z. Wang Z. Wang J. A. Ward M. Waterlaat N. K. Watson D. Websdale Y. Wei J. Wendel B. D. C. Westhenry C. White M. Whitehead E. Whiter A. R. Wiederhold D. Wiedner G. Wilkinson M. K. Wilkinson M. Williams M. R. J. Williams R. Williams Z. Williams F. F. Wilson W. Wislicki M. Witek L. Witola G. Wormser S. A. Wotton H. Wu J. Wu Y. Wu Z. Wu K. Wyllie S. Xian Z. Xiang Y. Xie A. Xu J. Xu L. Xu L. Xu M. Xu Z. Xu Z. Xu Z. Xu D. Yang K. Yang S. Yang X. Yang Y. Yang Z. Yang Z. Yang V. Yeroshenko H. Yeung H. Yin X. Yin C. Y. Yu J. Yu X. Yuan Y Yuan E. Zaffaroni M. Zavertyaev M. Zdybal F. Zenesini C. Zeng M. Zeng C. Zhang D. Zhang J. Zhang L. Zhang S. Zhang S. Zhang Y. Zhang Y. Z. Zhang Y. Zhao A. Zharkova A. Zhelezov S. Z. Zheng X. Z. Zheng Y. Zheng T. Zhou X. Zhou Y. Zhou V. Zhovkovska L. Z. Zhu X. Zhu X. Zhu V. Zhukov J. Zhuo Q. Zou D. Zuliani G. Zunica |
author_facet | The LHCb collaboration R. Aaij A. S. W. Abdelmotteleb C. Abellan Beteta F. Abudinén T. Ackernley A. A. Adefisoye B. Adeva M. Adinolfi P. Adlarson C. Agapopoulou C. A. Aidala Z. Ajaltouni S. Akar K. Akiba P. Albicocco J. Albrecht F. Alessio M. Alexander Z. Aliouche P. Alvarez Cartelle R. Amalric S. Amato J. L. Amey Y. Amhis L. An L. Anderlini M. Andersson A. Andreianov P. Andreola M. Andreotti D. Andreou A. Anelli D. Ao F. Archilli M. Argenton S. Arguedas Cuendis A. Artamonov M. Artuso E. Aslanides R. Ataíde Da Silva M. Atzeni B. Audurier D. Bacher I. Bachiller Perea S. Bachmann M. Bachmayer J. J. Back P. Baladron Rodriguez V. Balagura W. Baldini L. Balzani H. Bao J. Baptista de Souza Leite C. Barbero Pretel M. Barbetti I. R. Barbosa R. J. Barlow M. Barnyakov S. Barsuk W. Barter M. Bartolini J. Bartz J. M. Basels S. Bashir G. Bassi B. Batsukh P. B. Battista A. Bay A. Beck M. Becker F. Bedeschi I. B. Bediaga N. A. Behling S. Belin V. Bellee K. Belous I. Belov I. Belyaev G. Benane G. Bencivenni E. Ben-Haim A. Berezhnoy R. Bernet S. Bernet Andres A. Bertolin C. Betancourt F. Betti J. Bex Ia. Bezshyiko J. Bhom M. S. Bieker N. V. Biesuz P. Billoir A. Biolchini M. Birch F. C. R. Bishop A. Bitadze A. Bizzeti T. Blake F. Blanc J. E. Blank S. Blusk V. Bocharnikov J. A. Boelhauve O. Boente Garcia T. Boettcher A. Bohare A. Boldyrev C. S. Bolognani R. Bolzonella N. Bondar A. Bordelius F. Borgato S. Borghi M. Borsato J. T. Borsuk S. A. Bouchiba M. Bovill T. J. V. Bowcock A. Boyer C. Bozzi A. Brea Rodriguez N. Breer J. Brodzicka A. Brossa Gonzalo J. Brown D. Brundu E. Buchanan A. Buonaura L. Buonincontri A. T. Burke C. Burr J. S. Butter J. Buytaert W. Byczynski S. Cadeddu H. Cai A. C. Caillet R. Calabrese S. Calderon Ramirez L. Calefice S. Cali M. Calvi M. Calvo Gomez P. Camargo Magalhaes J. I. Cambon Bouzas P. Campana D. H. Campora Perez A. F. Campoverde Quezada S. Capelli L. Capriotti R. Caravaca-Mora A. Carbone L. Carcedo Salgado R. Cardinale A. Cardini P. Carniti L. Carus A. Casais Vidal R. Caspary G. Casse J. Castro Godinez M. Cattaneo G. Cavallero V. Cavallini S. Celani D. Cervenkov S. Cesare A. J. Chadwick I. Chahrour M. Charles Ph. Charpentier E. Chatzianagnostou M. Chefdeville C. Chen S. Chen Z. Chen A. Chernov S. Chernyshenko X. Chiotopoulos V. Chobanova S. Cholak M. Chrzaszcz A. Chubykin V. Chulikov P. Ciambrone X. Cid Vidal G. Ciezarek P. Cifra P. E. L. Clarke M. Clemencic H. V. Cliff J. Closier C. Cocha Toapaxi V. Coco J. Cogan E. Cogneras L. Cojocariu P. Collins T. Colombo M. C. Colonna A. Comerma-Montells L. Congedo A. Contu N. Cooke I. Corredoira A. Correia G. Corti J. J. Cottee Meldrum B. Couturier D. C. Craik M. Cruz Torres E. Curras Rivera R. Currie C. L. Da Silva S. Dadabaev L. Dai X. Dai E. Dall’Occo J. Dalseno C. D’Ambrosio J. Daniel A. Danilina P. d’Argent A. Davidson J. E. Davies A. Davis O. De Aguiar Francisco C. De Angelis F. De Benedetti J. de Boer K. De Bruyn S. De Capua M. De Cian U. De Freitas Carneiro Da Graca E. De Lucia J. M. De Miranda L. De Paula M. De Serio P. De Simone F. De Vellis J. A. de Vries F. Debernardis D. Decamp V. Dedu S. Dekkers L. Del Buono B. Delaney H.-P. Dembinski J. Deng V. Denysenko O. Deschamps F. Dettori B. Dey P. Di Nezza I. Diachkov S. Didenko S. Ding L. Dittmann V. Dobishuk A. D. Docheva C. Dong A. M. Donohoe F. Dordei A. C. dos Reis A. D. Dowling W. Duan P. Duda M. W. Dudek L. Dufour V. Duk P. Durante M. M. Duras J. M. Durham O. D. Durmus A. Dziurda A. Dzyuba S. Easo E. Eckstein U. Egede A. Egorychev V. Egorychev S. Eisenhardt E. Ejopu L. Eklund M. Elashri J. Ellbracht S. Ely A. Ene E. Epple J. Eschle S. Esen T. Evans F. Fabiano L. N. Falcao Y. Fan B. Fang L. Fantini M. Faria K. Farmer D. Fazzini L. Felkowski M. Feng M. Feo A. Fernandez Casani M. Fernandez Gomez A. D. Fernez F. Ferrari F. Ferreira Rodrigues M. Ferrillo M. Ferro-Luzzi S. Filippov R. A. Fini M. Fiorini M. Firlej K. L. Fischer D. S. Fitzgerald C. Fitzpatrick T. Fiutowski F. Fleuret M. Fontana L. F. Foreman R. Forty D. Foulds-Holt V. Franco Lima M. Franco Sevilla M. Frank E. Franzoso G. Frau C. Frei D. A. Friday J. Fu Q. Führing Y. Fujii T. Fulghesu E. Gabriel G. Galati M. D. Galati A. Gallas Torreira D. Galli S. Gambetta M. Gandelman P. Gandini B. Ganie H. Gao R. Gao T. Q. Gao Y. Gao Y. Gao Y. Gao M. Garau L. M. Garcia Martin P. Garcia Moreno J. García Pardiñas K. G. Garg L. Garrido C. Gaspar R. E. Geertsema L. L. Gerken E. Gersabeck M. Gersabeck T. Gershon S. Ghizzo Z. Ghorbanimoghaddam L. Giambastiani F. I. Giasemis V. Gibson H. K. Giemza A. L. Gilman M. Giovannetti A. Gioventù L. Girardey P. Gironella Gironell C. Giugliano M. A. Giza E. L. Gkougkousis F. C. Glaser V. V. Gligorov C. Göbel E. Golobardes D. Golubkov A. Golutvin A. Gomes S. Gomez Fernandez F. Goncalves Abrantes M. Goncerz G. Gong J. A. Gooding I. V. Gorelov C. Gotti J. P. Grabowski L. A. Granado Cardoso E. Graugés E. Graverini L. Grazette G. Graziani A. T. Grecu L. M. Greeven N. A. Grieser L. Grillo S. Gromov C. Gu M. Guarise L. Guerry M. Guittiere V. Guliaeva P. A. Günther A.-K. Guseinov E. Gushchin Y. Guz T. Gys K. Habermann T. Hadavizadeh C. Hadjivasiliou G. Haefeli C. Haen J. Haimberger M. Hajheidari G. Hallett M. M. Halvorsen P. M. Hamilton J. Hammerich Q. Han X. Han S. Hansmann-Menzemer L. Hao N. Harnew M. Hartmann S. Hashmi J. He F. Hemmer C. Henderson R. D. L. Henderson A. M. Hennequin K. Hennessy L. Henry J. Herd P. Herrero Gascon J. Heuel A. Hicheur G. Hijano Mendizabal D. Hill S. E. Hollitt J. Horswill R. Hou Y. Hou N. Howarth J. Hu J. Hu W. Hu X. Hu W. Huang W. Hulsbergen R. J. Hunter M. Hushchyn D. Hutchcroft M. Idzik D. Ilin P. Ilten A. Inglessi A. Iniukhin A. Ishteev K. Ivshin R. Jacobsson H. Jage S. J. Jaimes Elles S. Jakobsen E. Jans B. K. Jashal A. Jawahery V. Jevtic E. Jiang X. Jiang Y. Jiang Y. J. Jiang M. John A. John Rubesh Rajan D. Johnson C. R. Jones T. P. Jones S. Joshi B. Jost J. Juan Castella N. Jurik I. Juszczak D. Kaminaris S. Kandybei M. Kane Y. Kang C. Kar M. Karacson D. Karpenkov A. Kauniskangas J. W. Kautz M. K. Kazanecki F. Keizer M. Kenzie T. Ketel B. Khanji A. Kharisova S. Kholodenko G. Khreich T. Kirn V. S. Kirsebom O. Kitouni S. Klaver N. Kleijne K. Klimaszewski M. R. Kmiec S. Koliiev L. Kolk A. Konoplyannikov P. Kopciewicz P. Koppenburg M. Korolev I. Kostiuk O. Kot S. Kotriakhova A. Kozachuk P. Kravchenko L. Kravchuk M. Kreps P. Krokovny W. Krupa W. Krzemien O. Kshyvanskyi S. Kubis M. Kucharczyk V. Kudryavtsev E. Kulikova A. Kupsc B. K. Kutsenko D. Lacarrere P. Laguarta Gonzalez A. Lai A. Lampis D. Lancierini C. Landesa Gomez J. J. Lane R. Lane G. Lanfranchi C. Langenbruch J. Langer O. Lantwin T. Latham F. Lazzari C. Lazzeroni R. Le Gac H. Lee R. Lefèvre A. Leflat S. Legotin M. Lehuraux E. Lemos Cid O. Leroy T. Lesiak E. D. Lesser B. Leverington A. Li C. Li H. Li K. Li L. Li M. Li P. Li P.-R. Li Q. Li S. Li T. Li T. Li Y. Li Y. Li Z. Lian X. Liang S. Libralon C. Lin T. Lin R. Lindner V. Lisovskyi R. Litvinov F. L. Liu G. Liu K. Liu S. Liu W. Liu Y. Liu Y. Liu Y. L. Liu A. Lobo Salvia A. Loi J. Lomba Castro T. Long J. H. Lopes A. Lopez Huertas S. López Soliño Q. Lu C. Lucarelli D. Lucchesi M. Lucio Martinez V. Lukashenko Y. Luo A. Lupato E. Luppi K. Lynch X.-R. Lyu G. M. Ma R. Ma S. Maccolini F. Machefert F. Maciuc B. Mack I. Mackay L. M. Mackey L. R. Madhan Mohan M. J. Madurai A. Maevskiy D. Magdalinski D. Maisuzenko M. W. Majewski J. J. Malczewski S. Malde L. Malentacca A. Malinin T. Maltsev G. Manca G. Mancinelli C. Mancuso R. Manera Escalero D. Manuzzi D. Marangotto J. F. Marchand R. Marchevski U. Marconi E. Mariani S. Mariani C. Marin Benito J. Marks A. M. Marshall L. Martel G. Martelli G. Martellotti L. Martinazzoli M. Martinelli D. Martinez Santos F. Martinez Vidal A. Massafferri R. Matev A. Mathad V. Matiunin C. Matteuzzi K. R. Mattioli A. Mauri E. Maurice J. Mauricio P. Mayencourt J. Mazorra de Cos M. Mazurek M. McCann L. Mcconnell T. H. McGrath N. T. McHugh A. McNab R. McNulty B. Meadows G. Meier D. Melnychuk F. M. Meng M. Merk A. Merli L. Meyer Garcia D. Miao H. Miao M. Mikhasenko D. A. Milanes A. Minotti E. Minucci T. Miralles B. Mitreska D. S. Mitzel A. Modak R. A. Mohammed R. D. Moise S. Mokhnenko E. F. Molina Cardenas T. Mombächer M. Monk S. Monteil A. Morcillo Gomez G. Morello M. J. Morello M. P. Morgenthaler J. Moron A. B. Morris A. G. Morris R. Mountain H. Mu Z. M. Mu E. Muhammad F. Muheim M. Mulder K. Müller F. Muñoz-Rojas R. Murta P. Naik T. Nakada R. Nandakumar T. Nanut I. Nasteva M. Needham N. Neri S. Neubert N. Neufeld P. Neustroev J. Nicolini D. Nicotra E. M. Niel N. Nikitin P. Nogarolli P. Nogga C. Normand J. Novoa Fernandez G. Nowak C. Nunez H. N. Nur A. Oblakowska-Mucha V. Obraztsov T. Oeser S. Okamura A. Okhotnikov O. Okhrimenko R. Oldeman F. Oliva M. Olocco C. J. G. Onderwater R. H. O’Neil D. Osthues J. M. Otalora Goicochea P. Owen A. Oyanguren O. Ozcelik F. Paciolla A. Padee K. O. Padeken B. Pagare P. R. Pais T. Pajero A. Palano M. Palutan G. Panshin L. Paolucci A. Papanestis M. Pappagallo L. L. Pappalardo C. Pappenheimer C. Parkes B. Passalacqua G. Passaleva D. Passaro A. Pastore M. Patel J. Patoc C. Patrignani A. Paul C. J. Pawley A. Pellegrino J. Peng M. Pepe Altarelli S. Perazzini D. Pereima H. Pereira Da Costa A. Pereiro Castro P. Perret A. Perro K. Petridis A. Petrolini J. P. Pfaller H. Pham L. Pica M. Piccini L. Piccolo B. Pietrzyk G. Pietrzyk D. Pinci F. Pisani M. Pizzichemi V. Placinta M. Plo Casasus T. Poeschl F. Polci M. Poli Lener A. Poluektov N. Polukhina I. Polyakov E. Polycarpo S. Ponce D. Popov S. Poslavskii K. Prasanth C. Prouve D. Provenzano V. Pugatch G. Punzi S. Qasim Q. Q. Qian W. Qian N. Qin S. Qu R. Quagliani R. I. Rabadan Trejo J. H. Rademacker M. Rama M. Ramírez García V. Ramos De Oliveira M. Ramos Pernas M. S. Rangel F. Ratnikov G. Raven M. Rebollo De Miguel F. Redi J. Reich F. Reiss Z. Ren P. K. Resmi R. Ribatti G. R. Ricart D. Riccardi S. Ricciardi K. Richardson M. Richardson-Slipper K. Rinnert P. Robbe G. Robertson E. Rodrigues E. Rodriguez Fernandez J. A. Rodriguez Lopez E. Rodriguez Rodriguez J. Roensch A. Rogachev A. Rogovskiy D. L. Rolf P. Roloff V. Romanovskiy M. Romero Lamas A. Romero Vidal G. Romolini F. Ronchetti T. Rong M. Rotondo S. R. Roy M. S. Rudolph M. Ruiz Diaz R. A. Ruiz Fernandez J. Ruiz Vidal A. Ryzhikov J. Ryzka J. J. Saavedra-Arias J. J. Saborido Silva R. Sadek N. Sagidova D. Sahoo N. Sahoo B. Saitta M. Salomoni I. Sanderswood R. Santacesaria C. Santamarina Rios M. Santimaria L. Santoro E. Santovetti A. Saputi D. Saranin A. Sarnatskiy G. Sarpis M. Sarpis C. Satriano A. Satta M. Saur D. Savrina H. Sazak F. Sborzacchi L. G. Scantlebury Smead A. Scarabotto S. Schael S. Scherl M. Schiller H. Schindler M. Schmelling B. Schmidt S. Schmitt H. Schmitz O. Schneider A. Schopper N. Schulte S. Schulte M. H. Schune R. Schwemmer G. Schwering B. Sciascia A. Sciuccati S. Sellam A. Semennikov T. Senger M. Senghi Soares A. Sergi N. Serra L. Sestini A. Seuthe Y. Shang D. M. Shangase M. Shapkin R. S. Sharma I. Shchemerov L. Shchutska T. Shears L. Shekhtman Z. Shen S. Sheng V. Shevchenko B. Shi Q. Shi Y. Shimizu E. Shmanin R. Shorkin J. D. Shupperd R. Silva Coutinho G. Simi S. Simone N. Skidmore T. Skwarnicki M. W. Slater J. C. Smallwood E. Smith K. Smith M. Smith A. Snoch L. Soares Lavra M. D. Sokoloff F. J. P. Soler A. Solomin A. Solovev I. Solovyev R. Song Y. Song Y. Song Y. S. Song F. L. Souza De Almeida B. Souza De Paula E. Spadaro Norella E. Spedicato J. G. Speer E. Spiridenkov P. Spradlin V. Sriskaran F. Stagni M. Stahl S. Stahl S. Stanislaus E. N. Stein O. Steinkamp O. Stenyakin H. Stevens D. Strekalina Y. Su F. Suljik J. Sun L. Sun Y. Sun D. Sundfeld W. Sutcliffe P. N. Swallow K. Swientek F. Swystun A. Szabelski T. Szumlak Y. Tan M. D. Tat A. Terentev F. Terzuoli F. Teubert E. Thomas D. J. D. Thompson H. Tilquin V. Tisserand S. T’Jampens M. Tobin L. Tomassetti G. Tonani X. Tong D. Torres Machado L. Toscano D. Y. Tou C. Trippl G. Tuci N. Tuning L. H. Uecker A. Ukleja D. J. Unverzagt E. Ursov A. Usachov A. Ustyuzhanin U. Uwer V. Vagnoni V. Valcarce Cadenas G. Valenti N. Valls Canudas H. Van Hecke E. van Herwijnen C. B. Van Hulse R. Van Laak M. van Veghel G. Vasquez R. Vazquez Gomez P. Vazquez Regueiro C. Vázquez Sierra S. Vecchi J. J. Velthuis M. Veltri A. Venkateswaran M. Verdoglia M. Vesterinen D. Vico Benet P. Vidrier Villalba M. Vieites Diaz X. Vilasis-Cardona E. Vilella Figueras A. Villa P. Vincent F. C. Volle D. vom Bruch N. Voropaev K. Vos G. Vouters C. Vrahas J. Wagner J. Walsh E. J. Walton G. Wan C. Wang G. Wang J. Wang J. Wang J. Wang J. Wang M. Wang N. W. Wang R. Wang X. Wang X. Wang X. W. Wang Y. Wang Z. Wang Z. Wang Z. Wang J. A. Ward M. Waterlaat N. K. Watson D. Websdale Y. Wei J. Wendel B. D. C. Westhenry C. White M. Whitehead E. Whiter A. R. Wiederhold D. Wiedner G. Wilkinson M. K. Wilkinson M. Williams M. R. J. Williams R. Williams Z. Williams F. F. Wilson W. Wislicki M. Witek L. Witola G. Wormser S. A. Wotton H. Wu J. Wu Y. Wu Z. Wu K. Wyllie S. Xian Z. Xiang Y. Xie A. Xu J. Xu L. Xu L. Xu M. Xu Z. Xu Z. Xu Z. Xu D. Yang K. Yang S. Yang X. Yang Y. Yang Z. Yang Z. Yang V. Yeroshenko H. Yeung H. Yin X. Yin C. Y. Yu J. Yu X. Yuan Y Yuan E. Zaffaroni M. Zavertyaev M. Zdybal F. Zenesini C. Zeng M. Zeng C. Zhang D. Zhang J. Zhang L. Zhang S. Zhang S. Zhang Y. Zhang Y. Z. Zhang Y. Zhao A. Zharkova A. Zhelezov S. Z. Zheng X. Z. Zheng Y. Zheng T. Zhou X. Zhou Y. Zhou V. Zhovkovska L. Z. Zhu X. Zhu X. Zhu V. Zhukov J. Zhuo Q. Zou D. Zuliani G. Zunica |
author_sort | The LHCb collaboration |
collection | DOAJ |
description | Abstract The differential branching fraction and angular coefficients of Λ b 0 $$ {\Lambda}_b^0 $$ → pK − μ + μ − decays are measured in bins of the dimuon mass squared and dihadron mass. The analysis is performed using a data set corresponding to 9 fb −1 of integrated luminosity collected with the LHCb detector between 2011 and 2018. The data are consistent with receiving contributions from a mixture of Λ resonances with different spin-parity quantum numbers. The angular coefficients show a pattern of vector-axial vector interference that is a characteristic of the type of flavour-changing neutral-current transition relevant for these decays. |
format | Article |
id | doaj-art-5593f99b78624d0ab77a5344b068e4f7 |
institution | Kabale University |
issn | 1029-8479 |
language | English |
publishDate | 2024-12-01 |
publisher | SpringerOpen |
record_format | Article |
series | Journal of High Energy Physics |
spelling | doaj-art-5593f99b78624d0ab77a5344b068e4f72025-01-05T12:06:00ZengSpringerOpenJournal of High Energy Physics1029-84792024-12-0120241213310.1007/JHEP12(2024)147Analysis of Λ b 0 $$ {\Lambda}_b^0 $$ → pK − μ + μ − decaysThe LHCb collaborationR. Aaij0A. S. W. Abdelmotteleb1C. Abellan Beteta2F. Abudinén3T. Ackernley4A. A. Adefisoye5B. Adeva6M. Adinolfi7P. Adlarson8C. Agapopoulou9C. A. Aidala10Z. Ajaltouni11S. Akar12K. Akiba13P. Albicocco14J. Albrecht15F. Alessio16M. Alexander17Z. Aliouche18P. Alvarez Cartelle19R. Amalric20S. Amato21J. L. Amey22Y. Amhis23L. An24L. Anderlini25M. Andersson26A. AndreianovP. Andreola27M. Andreotti28D. Andreou29A. Anelli30D. Ao31F. Archilli32M. Argenton33S. Arguedas Cuendis34A. ArtamonovM. Artuso35E. Aslanides36R. Ataíde Da Silva37M. Atzeni38B. Audurier39D. Bacher40I. Bachiller Perea41S. Bachmann42M. Bachmayer43J. J. Back44P. Baladron Rodriguez45V. Balagura46W. Baldini47L. Balzani48H. Bao49J. Baptista de Souza Leite50C. Barbero Pretel51M. Barbetti52I. R. Barbosa53R. J. Barlow54M. Barnyakov55S. Barsuk56W. Barter57M. Bartolini58J. Bartz59J. M. Basels60S. Bashir61G. Bassi62B. Batsukh63P. B. Battista64A. Bay65A. Beck66M. Becker67F. Bedeschi68I. B. Bediaga69N. A. Behling70S. Belin71V. Bellee72K. BelousI. Belov73I. Belyaev74G. Benane75G. Bencivenni76E. Ben-Haim77A. BerezhnoyR. Bernet78S. Bernet Andres79A. Bertolin80C. Betancourt81F. Betti82J. Bex83Ia. Bezshyiko84J. Bhom85M. S. Bieker86N. V. Biesuz87P. Billoir88A. Biolchini89M. Birch90F. C. R. Bishop91A. Bitadze92A. BizzetiT. Blake93F. Blanc94J. E. Blank95S. Blusk96V. BocharnikovJ. A. Boelhauve97O. Boente Garcia98T. Boettcher99A. Bohare100A. BoldyrevC. S. Bolognani101R. Bolzonella102N. BondarA. Bordelius103F. Borgato104S. Borghi105M. Borsato106J. T. Borsuk107S. A. Bouchiba108M. Bovill109T. J. V. Bowcock110A. Boyer111C. Bozzi112A. Brea Rodriguez113N. Breer114J. Brodzicka115A. Brossa Gonzalo116J. Brown117D. Brundu118E. Buchanan119A. Buonaura120L. Buonincontri121A. T. Burke122C. Burr123J. S. Butter124J. Buytaert125W. Byczynski126S. Cadeddu127H. Cai128A. C. Caillet129R. Calabrese130S. Calderon Ramirez131L. Calefice132S. Cali133M. Calvi134M. Calvo Gomez135P. Camargo Magalhaes136J. I. Cambon Bouzas137P. Campana138D. H. Campora Perez139A. F. Campoverde Quezada140S. Capelli141L. Capriotti142R. Caravaca-Mora143A. Carbone144L. Carcedo Salgado145R. Cardinale146A. Cardini147P. Carniti148L. Carus149A. Casais Vidal150R. Caspary151G. Casse152J. Castro Godinez153M. Cattaneo154G. Cavallero155V. Cavallini156S. Celani157D. Cervenkov158S. Cesare159A. J. Chadwick160I. Chahrour161M. Charles162Ph. Charpentier163E. Chatzianagnostou164M. Chefdeville165C. Chen166S. Chen167Z. Chen168A. Chernov169S. Chernyshenko170X. Chiotopoulos171V. Chobanova172S. Cholak173M. Chrzaszcz174A. ChubykinV. ChulikovP. Ciambrone175X. Cid Vidal176G. Ciezarek177P. Cifra178P. E. L. Clarke179M. Clemencic180H. V. Cliff181J. Closier182C. Cocha Toapaxi183V. Coco184J. Cogan185E. Cogneras186L. Cojocariu187P. Collins188T. Colombo189M. C. Colonna190A. Comerma-Montells191L. Congedo192A. Contu193N. Cooke194I. Corredoira195A. Correia196G. Corti197J. J. Cottee Meldrum198B. Couturier199D. C. Craik200M. Cruz Torres201E. Curras Rivera202R. Currie203C. L. Da Silva204S. DadabaevL. Dai205X. Dai206E. Dall’Occo207J. Dalseno208C. D’Ambrosio209J. Daniel210A. DanilinaP. d’Argent211A. Davidson212J. E. Davies213A. Davis214O. De Aguiar Francisco215C. De Angelis216F. De Benedetti217J. de Boer218K. De Bruyn219S. De Capua220M. De Cian221U. De Freitas Carneiro Da Graca222E. De Lucia223J. M. De Miranda224L. De Paula225M. De Serio226P. De Simone227F. De Vellis228J. A. de Vries229F. Debernardis230D. Decamp231V. Dedu232S. Dekkers233L. Del Buono234B. Delaney235H.-P. Dembinski236J. Deng237V. Denysenko238O. Deschamps239F. Dettori240B. Dey241P. Di Nezza242I. DiachkovS. DidenkoS. Ding243L. Dittmann244V. Dobishuk245A. D. Docheva246C. Dong247A. M. Donohoe248F. Dordei249A. C. dos Reis250A. D. Dowling251W. Duan252P. Duda253M. W. Dudek254L. Dufour255V. Duk256P. Durante257M. M. Duras258J. M. Durham259O. D. Durmus260A. Dziurda261A. DzyubaS. Easo262E. Eckstein263U. Egede264A. EgorychevV. EgorychevS. Eisenhardt265E. Ejopu266L. Eklund267M. Elashri268J. Ellbracht269S. Ely270A. Ene271E. Epple272J. Eschle273S. Esen274T. Evans275F. Fabiano276L. N. Falcao277Y. Fan278B. Fang279L. Fantini280M. Faria281K. Farmer282D. Fazzini283L. Felkowski284M. Feng285M. Feo286A. Fernandez Casani287M. Fernandez Gomez288A. D. Fernez289F. Ferrari290F. Ferreira Rodrigues291M. Ferrillo292M. Ferro-Luzzi293S. FilippovR. A. Fini294M. Fiorini295M. Firlej296K. L. Fischer297D. S. Fitzgerald298C. Fitzpatrick299T. Fiutowski300F. Fleuret301M. Fontana302L. F. Foreman303R. Forty304D. Foulds-Holt305V. Franco Lima306M. Franco Sevilla307M. Frank308E. Franzoso309G. Frau310C. Frei311D. A. Friday312J. Fu313Q. Führing314Y. Fujii315T. Fulghesu316E. Gabriel317G. Galati318M. D. Galati319A. Gallas Torreira320D. Galli321S. Gambetta322M. Gandelman323P. Gandini324B. Ganie325H. Gao326R. Gao327T. Q. Gao328Y. Gao329Y. Gao330Y. Gao331M. Garau332L. M. Garcia Martin333P. Garcia Moreno334J. García Pardiñas335K. G. Garg336L. Garrido337C. Gaspar338R. E. Geertsema339L. L. Gerken340E. Gersabeck341M. Gersabeck342T. Gershon343S. Ghizzo344Z. Ghorbanimoghaddam345L. Giambastiani346F. I. Giasemis347V. Gibson348H. K. Giemza349A. L. Gilman350M. Giovannetti351A. Gioventù352L. Girardey353P. Gironella Gironell354C. Giugliano355M. A. Giza356E. L. Gkougkousis357F. C. Glaser358V. V. Gligorov359C. Göbel360E. Golobardes361D. GolubkovA. Golutvin362A. Gomes363S. Gomez Fernandez364F. Goncalves Abrantes365M. Goncerz366G. Gong367J. A. Gooding368I. V. GorelovC. Gotti369J. P. Grabowski370L. A. Granado Cardoso371E. Graugés372E. Graverini373L. Grazette374G. GrazianiA. T. Grecu375L. M. Greeven376N. A. Grieser377L. Grillo378S. GromovC. Gu379M. Guarise380L. Guerry381M. Guittiere382V. GuliaevaP. A. Günther383A.-K. Guseinov384E. GushchinY. Guz385T. Gys386K. Habermann387T. Hadavizadeh388C. Hadjivasiliou389G. Haefeli390C. Haen391J. Haimberger392M. Hajheidari393G. Hallett394M. M. Halvorsen395P. M. Hamilton396J. Hammerich397Q. Han398X. Han399S. Hansmann-Menzemer400L. Hao401N. Harnew402M. Hartmann403S. Hashmi404J. He405F. Hemmer406C. Henderson407R. D. L. Henderson408A. M. Hennequin409K. Hennessy410L. Henry411J. Herd412P. Herrero Gascon413J. Heuel414A. Hicheur415G. Hijano Mendizabal416D. Hill417S. E. Hollitt418J. Horswill419R. Hou420Y. Hou421N. Howarth422J. Hu423J. Hu424W. Hu425X. Hu426W. Huang427W. Hulsbergen428R. J. Hunter429M. HushchynD. Hutchcroft430M. Idzik431D. IlinP. Ilten432A. InglessiA. IniukhinA. IshteevK. IvshinR. Jacobsson433H. Jage434S. J. Jaimes Elles435S. Jakobsen436E. Jans437B. K. Jashal438A. Jawahery439V. Jevtic440E. Jiang441X. Jiang442Y. Jiang443Y. J. Jiang444M. John445A. John Rubesh Rajan446D. Johnson447C. R. Jones448T. P. Jones449S. Joshi450B. Jost451J. Juan Castella452N. Jurik453I. Juszczak454D. Kaminaris455S. Kandybei456M. Kane457Y. Kang458C. Kar459M. Karacson460D. KarpenkovA. Kauniskangas461J. W. Kautz462M. K. Kazanecki463F. Keizer464M. Kenzie465T. Ketel466B. Khanji467A. KharisovaS. Kholodenko468G. Khreich469T. Kirn470V. S. Kirsebom471O. Kitouni472S. Klaver473N. Kleijne474K. Klimaszewski475M. R. Kmiec476S. Koliiev477L. Kolk478A. KonoplyannikovP. Kopciewicz479P. Koppenburg480M. KorolevI. Kostiuk481O. Kot482S. KotriakhovaA. KozachukP. KravchenkoL. KravchukM. Kreps483P. KrokovnyW. Krupa484W. Krzemien485O. Kshyvanskyi486S. Kubis487M. Kucharczyk488V. KudryavtsevE. KulikovaA. Kupsc489B. K. Kutsenko490D. Lacarrere491P. Laguarta Gonzalez492A. Lai493A. Lampis494D. Lancierini495C. Landesa Gomez496J. J. Lane497R. Lane498G. Lanfranchi499C. Langenbruch500J. Langer501O. LantwinT. Latham502F. Lazzari503C. Lazzeroni504R. Le Gac505H. Lee506R. Lefèvre507A. LeflatS. LegotinM. Lehuraux508E. Lemos Cid509O. Leroy510T. Lesiak511E. D. Lesser512B. Leverington513A. Li514C. Li515H. Li516K. Li517L. Li518M. Li519P. Li520P.-R. Li521Q. Li522S. Li523T. Li524T. Li525Y. Li526Y. Li527Z. Lian528X. Liang529S. Libralon530C. Lin531T. Lin532R. Lindner533V. Lisovskyi534R. Litvinov535F. L. Liu536G. Liu537K. Liu538S. Liu539W. Liu540Y. Liu541Y. Liu542Y. L. Liu543A. Lobo Salvia544A. Loi545J. Lomba Castro546T. Long547J. H. Lopes548A. Lopez Huertas549S. López Soliño550Q. Lu551C. Lucarelli552D. Lucchesi553M. Lucio Martinez554V. Lukashenko555Y. Luo556A. Lupato557E. Luppi558K. Lynch559X.-R. Lyu560G. M. Ma561R. Ma562S. Maccolini563F. Machefert564F. Maciuc565B. Mack566I. Mackay567L. M. Mackey568L. R. Madhan Mohan569M. J. Madurai570A. MaevskiyD. Magdalinski571D. MaisuzenkoM. W. Majewski572J. J. Malczewski573S. Malde574L. Malentacca575A. MalininT. MaltsevG. Manca576G. Mancinelli577C. Mancuso578R. Manera Escalero579D. Manuzzi580D. Marangotto581J. F. Marchand582R. Marchevski583U. Marconi584E. Mariani585S. Mariani586C. Marin Benito587J. Marks588A. M. Marshall589L. Martel590G. Martelli591G. Martellotti592L. Martinazzoli593M. Martinelli594D. Martinez Santos595F. Martinez Vidal596A. Massafferri597R. Matev598A. Mathad599V. MatiuninC. Matteuzzi600K. R. Mattioli601A. Mauri602E. Maurice603J. Mauricio604P. Mayencourt605J. Mazorra de Cos606M. Mazurek607M. McCann608L. Mcconnell609T. H. McGrath610N. T. McHugh611A. McNab612R. McNulty613B. Meadows614G. Meier615D. Melnychuk616F. M. Meng617M. Merk618A. Merli619L. Meyer Garcia620D. Miao621H. Miao622M. Mikhasenko623D. A. Milanes624A. Minotti625E. Minucci626T. Miralles627B. Mitreska628D. S. Mitzel629A. Modak630R. A. Mohammed631R. D. Moise632S. MokhnenkoE. F. Molina Cardenas633T. Mombächer634M. Monk635S. Monteil636A. Morcillo Gomez637G. Morello638M. J. Morello639M. P. Morgenthaler640J. Moron641A. B. Morris642A. G. Morris643R. Mountain644H. Mu645Z. M. Mu646E. Muhammad647F. Muheim648M. Mulder649K. Müller650F. Muñoz-Rojas651R. Murta652P. Naik653T. Nakada654R. Nandakumar655T. Nanut656I. Nasteva657M. Needham658N. Neri659S. Neubert660N. Neufeld661P. NeustroevJ. Nicolini662D. Nicotra663E. M. Niel664N. NikitinP. Nogarolli665P. Nogga666C. Normand667J. Novoa Fernandez668G. Nowak669C. Nunez670H. N. Nur671A. Oblakowska-Mucha672V. ObraztsovT. Oeser673S. Okamura674A. OkhotnikovO. Okhrimenko675R. Oldeman676F. Oliva677M. Olocco678C. J. G. Onderwater679R. H. O’Neil680D. Osthues681J. M. Otalora Goicochea682P. Owen683A. Oyanguren684O. Ozcelik685F. Paciolla686A. Padee687K. O. Padeken688B. Pagare689P. R. Pais690T. Pajero691A. Palano692M. Palutan693G. PanshinL. Paolucci694A. Papanestis695M. Pappagallo696L. L. Pappalardo697C. Pappenheimer698C. Parkes699B. Passalacqua700G. Passaleva701D. Passaro702A. Pastore703M. Patel704J. Patoc705C. Patrignani706A. Paul707C. J. Pawley708A. Pellegrino709J. Peng710M. Pepe Altarelli711S. Perazzini712D. PereimaH. Pereira Da Costa713A. Pereiro Castro714P. Perret715A. Perro716K. Petridis717A. Petrolini718J. P. Pfaller719H. Pham720L. Pica721M. Piccini722L. Piccolo723B. Pietrzyk724G. Pietrzyk725D. Pinci726F. Pisani727M. Pizzichemi728V. Placinta729M. Plo Casasus730T. Poeschl731F. Polci732M. Poli Lener733A. Poluektov734N. PolukhinaI. PolyakovE. Polycarpo735S. Ponce736D. Popov737S. PoslavskiiK. Prasanth738C. Prouve739D. Provenzano740V. Pugatch741G. Punzi742S. Qasim743Q. Q. Qian744W. Qian745N. Qin746S. Qu747R. Quagliani748R. I. Rabadan Trejo749J. H. Rademacker750M. Rama751M. Ramírez García752V. Ramos De Oliveira753M. Ramos Pernas754M. S. Rangel755F. RatnikovG. Raven756M. Rebollo De Miguel757F. Redi758J. Reich759F. Reiss760Z. Ren761P. K. Resmi762R. Ribatti763G. R. Ricart764D. Riccardi765S. Ricciardi766K. Richardson767M. Richardson-Slipper768K. Rinnert769P. Robbe770G. Robertson771E. Rodrigues772E. Rodriguez Fernandez773J. A. Rodriguez Lopez774E. Rodriguez Rodriguez775J. Roensch776A. RogachevA. Rogovskiy777D. L. Rolf778P. Roloff779V. Romanovskiy780M. Romero Lamas781A. Romero Vidal782G. Romolini783F. Ronchetti784T. Rong785M. Rotondo786S. R. Roy787M. S. Rudolph788M. Ruiz Diaz789R. A. Ruiz Fernandez790J. Ruiz Vidal791A. RyzhikovJ. Ryzka792J. J. Saavedra-Arias793J. J. Saborido Silva794R. Sadek795N. SagidovaD. Sahoo796N. Sahoo797B. Saitta798M. Salomoni799I. Sanderswood800R. Santacesaria801C. Santamarina Rios802M. Santimaria803L. Santoro804E. Santovetti805A. Saputi806D. SaraninA. Sarnatskiy807G. Sarpis808M. Sarpis809C. Satriano810A. Satta811M. Saur812D. SavrinaH. Sazak813F. Sborzacchi814L. G. Scantlebury Smead815A. Scarabotto816S. Schael817S. Scherl818M. Schiller819H. Schindler820M. Schmelling821B. Schmidt822S. Schmitt823H. Schmitz824O. Schneider825A. Schopper826N. Schulte827S. Schulte828M. H. Schune829R. Schwemmer830G. Schwering831B. Sciascia832A. Sciuccati833S. Sellam834A. SemennikovT. Senger835M. Senghi Soares836A. Sergi837N. Serra838L. Sestini839A. Seuthe840Y. Shang841D. M. Shangase842M. ShapkinR. S. Sharma843I. ShchemerovL. Shchutska844T. Shears845L. ShekhtmanZ. Shen846S. Sheng847V. ShevchenkoB. Shi848Q. Shi849Y. Shimizu850E. Shmanin851R. ShorkinJ. D. Shupperd852R. Silva Coutinho853G. Simi854S. Simone855N. Skidmore856T. Skwarnicki857M. W. Slater858J. C. Smallwood859E. Smith860K. Smith861M. Smith862A. Snoch863L. Soares Lavra864M. D. Sokoloff865F. J. P. Soler866A. Solomin867A. SolovevI. SolovyevR. Song868Y. Song869Y. Song870Y. S. Song871F. L. Souza De Almeida872B. Souza De Paula873E. Spadaro Norella874E. Spedicato875J. G. Speer876E. SpiridenkovP. Spradlin877V. Sriskaran878F. Stagni879M. Stahl880S. Stahl881S. Stanislaus882E. N. Stein883O. Steinkamp884O. StenyakinH. Stevens885D. StrekalinaY. Su886F. Suljik887J. Sun888L. Sun889Y. Sun890D. Sundfeld891W. Sutcliffe892P. N. Swallow893K. Swientek894F. Swystun895A. Szabelski896T. Szumlak897Y. Tan898M. D. Tat899A. TerentevF. Terzuoli900F. Teubert901E. Thomas902D. J. D. Thompson903H. Tilquin904V. Tisserand905S. T’Jampens906M. Tobin907L. Tomassetti908G. Tonani909X. Tong910D. Torres Machado911L. Toscano912D. Y. Tou913C. Trippl914G. Tuci915N. Tuning916L. H. Uecker917A. Ukleja918D. J. Unverzagt919E. UrsovA. Usachov920A. UstyuzhaninU. Uwer921V. Vagnoni922V. Valcarce Cadenas923G. Valenti924N. Valls Canudas925H. Van Hecke926E. van Herwijnen927C. B. Van Hulse928R. Van Laak929M. van Veghel930G. Vasquez931R. Vazquez Gomez932P. Vazquez Regueiro933C. Vázquez Sierra934S. Vecchi935J. J. Velthuis936M. Veltri937A. Venkateswaran938M. Verdoglia939M. Vesterinen940D. Vico Benet941P. Vidrier Villalba942M. Vieites Diaz943X. Vilasis-Cardona944E. Vilella Figueras945A. Villa946P. Vincent947F. C. Volle948D. vom Bruch949N. VoropaevK. Vos950G. Vouters951C. Vrahas952J. Wagner953J. Walsh954E. J. Walton955G. Wan956C. Wang957G. Wang958J. Wang959J. Wang960J. Wang961J. Wang962M. Wang963N. W. Wang964R. Wang965X. Wang966X. Wang967X. W. Wang968Y. Wang969Z. Wang970Z. Wang971Z. Wang972J. A. Ward973M. Waterlaat974N. K. Watson975D. Websdale976Y. Wei977J. Wendel978B. D. C. Westhenry979C. White980M. Whitehead981E. Whiter982A. R. Wiederhold983D. Wiedner984G. Wilkinson985M. K. Wilkinson986M. Williams987M. R. J. Williams988R. Williams989Z. Williams990F. F. Wilson991W. Wislicki992M. Witek993L. Witola994G. Wormser995S. A. Wotton996H. Wu997J. Wu998Y. Wu999Z. Wu1000K. Wyllie1001S. Xian1002Z. Xiang1003Y. Xie1004A. Xu1005J. Xu1006L. Xu1007L. Xu1008M. Xu1009Z. Xu1010Z. Xu1011Z. Xu1012D. Yang1013K. Yang1014S. Yang1015X. Yang1016Y. Yang1017Z. Yang1018Z. Yang1019V. Yeroshenko1020H. Yeung1021H. Yin1022X. Yin1023C. Y. Yu1024J. Yu1025X. Yuan1026Y Yuan1027E. Zaffaroni1028M. Zavertyaev1029M. Zdybal1030F. Zenesini1031C. Zeng1032M. Zeng1033C. Zhang1034D. Zhang1035J. Zhang1036L. Zhang1037S. Zhang1038S. Zhang1039Y. Zhang1040Y. Z. Zhang1041Y. Zhao1042A. ZharkovaA. Zhelezov1043S. Z. Zheng1044X. Z. Zheng1045Y. Zheng1046T. Zhou1047X. Zhou1048Y. Zhou1049V. Zhovkovska1050L. Z. Zhu1051X. Zhu1052X. Zhu1053V. Zhukov1054J. Zhuo1055Q. Zou1056D. Zuliani1057G. Zunica1058Nikhef National Institute for Subatomic PhysicsDepartment of Physics, University of WarwickPhysik-Institut, Universität ZürichDepartment of Physics, University of WarwickOliver Lodge Laboratory, University of LiverpoolSyracuse UniversityInstituto Galego de Física de Altas Enerxías (IGFAE), Universidade de Santiago de CompostelaH.H. Wills Physics Laboratory, University of BristolDepartment of Physics and Astronomy, Uppsala UniversityUniversité Paris-Saclay, CNRS/IN2P3, IJCLabUniversity of MichiganUniversité Clermont Auvergne, CNRS/IN2P3, LPCUniversity of CincinnatiNikhef National Institute for Subatomic PhysicsINFN Laboratori Nazionali di FrascatiFakultät Physik, Technische Universität DortmundEuropean Organization for Nuclear Research (CERN)School of Physics and Astronomy, University of GlasgowDepartment of Physics and Astronomy, University of ManchesterCavendish Laboratory, University of CambridgeLPNHE, Sorbonne Université, Paris Diderot Sorbonne Paris Cité, CNRS/IN2P3Universidade Federal do Rio de Janeiro (UFRJ)H.H. Wills Physics Laboratory, University of BristolUniversité Paris-Saclay, CNRS/IN2P3, IJCLabSchool of Physics State Key Laboratory of Nuclear Physics and Technology, Peking UniversityINFN Sezione di FirenzePhysik-Institut, Universität ZürichPhysik-Institut, Universität ZürichINFN Sezione di FerraraSyracuse UniversityINFN Sezione di Milano-BicoccaUniversity of Chinese Academy of SciencesINFN Sezione di Roma Tor VergataINFN Sezione di FerraraConsejo Nacional de Rectores (CONARE)Syracuse UniversityAix Marseille Univ, CNRS/IN2P3, CPPMInstitute of Physics, Ecole Polytechnique Fédérale de Lausanne (EPFL)Massachusetts Institute of TechnologyLaboratoire Leprince-Ringuet, CNRS/IN2P3, Ecole Polytechnique, Institut Polytechnique de ParisDepartment of Physics, University of OxfordUniversité Savoie Mont Blanc, CNRS, IN2P3-LAPPPhysikalisches Institut, Ruprecht-Karls-Universität HeidelbergInstitute of Physics, Ecole Polytechnique Fédérale de Lausanne (EPFL)Department of Physics, University of WarwickInstituto Galego de Física de Altas Enerxías (IGFAE), Universidade de Santiago de CompostelaLaboratoire Leprince-Ringuet, CNRS/IN2P3, Ecole Polytechnique, Institut Polytechnique de ParisINFN Sezione di FerraraFakultät Physik, Technische Universität DortmundUniversity of Chinese Academy of SciencesOliver Lodge Laboratory, University of LiverpoolInstituto Galego de Física de Altas Enerxías (IGFAE), Universidade de Santiago de CompostelaINFN Sezione di FirenzePontifícia Universidade Católica do Rio de Janeiro (PUC-Rio)Department of Physics and Astronomy, University of ManchesterINFN Sezione di BolognaUniversité Paris-Saclay, CNRS/IN2P3, IJCLabSchool of Physics and Astronomy, University of EdinburghCavendish Laboratory, University of CambridgeSyracuse UniversityI. Physikalisches Institut, RWTH Aachen UniversityAGH - University of Krakow, Faculty of Physics and Applied Computer ScienceINFN Sezione di PisaInstitute Of High Energy Physics (IHEP)Université Paris-Saclay, CNRS/IN2P3, IJCLabInstitute of Physics, Ecole Polytechnique Fédérale de Lausanne (EPFL)Department of Physics, University of WarwickFakultät Physik, Technische Universität DortmundINFN Sezione di PisaCentro Brasileiro de Pesquisas Físicas (CBPF)Fakultät Physik, Technische Universität DortmundInstituto Galego de Física de Altas Enerxías (IGFAE), Universidade de Santiago de CompostelaPhysik-Institut, Universität ZürichINFN Sezione di GenovaINFN Sezione di Roma La SapienzaAix Marseille Univ, CNRS/IN2P3, CPPMINFN Laboratori Nazionali di FrascatiLPNHE, Sorbonne Université, Paris Diderot Sorbonne Paris Cité, CNRS/IN2P3Physik-Institut, Universität ZürichDS4DS, La Salle, Universitat Ramon LlullINFN Sezione di PadovaPhysik-Institut, Universität ZürichSchool of Physics and Astronomy, University of EdinburghCavendish Laboratory, University of CambridgePhysik-Institut, Universität ZürichHenryk Niewodniczanski Institute of Nuclear Physics Polish Academy of SciencesFakultät Physik, Technische Universität DortmundINFN Sezione di FerraraLPNHE, Sorbonne Université, Paris Diderot Sorbonne Paris Cité, CNRS/IN2P3Nikhef National Institute for Subatomic PhysicsImperial College LondonUniversité Savoie Mont Blanc, CNRS, IN2P3-LAPPDepartment of Physics and Astronomy, University of ManchesterDepartment of Physics, University of WarwickInstitute of Physics, Ecole Polytechnique Fédérale de Lausanne (EPFL)Fakultät Physik, Technische Universität DortmundSyracuse UniversityFakultät Physik, Technische Universität DortmundLaboratoire Leprince-Ringuet, CNRS/IN2P3, Ecole Polytechnique, Institut Polytechnique de ParisUniversity of CincinnatiSchool of Physics and Astronomy, University of EdinburghUniversiteit MaastrichtINFN Sezione di FerraraEuropean Organization for Nuclear Research (CERN)INFN Sezione di PadovaDepartment of Physics and Astronomy, University of ManchesterINFN Sezione di Milano-BicoccaHenryk Niewodniczanski Institute of Nuclear Physics Polish Academy of SciencesInstitute of Physics, Ecole Polytechnique Fédérale de Lausanne (EPFL)Department of Physics, University of OxfordOliver Lodge Laboratory, University of LiverpoolEuropean Organization for Nuclear Research (CERN)INFN Sezione di FerraraInstitute of Physics, Ecole Polytechnique Fédérale de Lausanne (EPFL)Fakultät Physik, Technische Universität DortmundHenryk Niewodniczanski Institute of Nuclear Physics Polish Academy of SciencesInstituto Galego de Física de Altas Enerxías (IGFAE), Universidade de Santiago de CompostelaOliver Lodge Laboratory, University of LiverpoolINFN Sezione di CagliariSchool of Physics and Astronomy, University of EdinburghPhysik-Institut, Universität ZürichINFN Sezione di PadovaDepartment of Physics and Astronomy, University of ManchesterEuropean Organization for Nuclear Research (CERN)Cavendish Laboratory, University of CambridgeEuropean Organization for Nuclear Research (CERN)European Organization for Nuclear Research (CERN)INFN Sezione di CagliariSchool of Physics and Technology, Wuhan UniversityLPNHE, Sorbonne Université, Paris Diderot Sorbonne Paris Cité, CNRS/IN2P3INFN Sezione di FerraraConsejo Nacional de Rectores (CONARE)ICCUB, Universitat de BarcelonaINFN Laboratori Nazionali di FrascatiINFN Sezione di Milano-BicoccaDS4DS, La Salle, Universitat Ramon LlullCentro Brasileiro de Pesquisas Físicas (CBPF)Instituto Galego de Física de Altas Enerxías (IGFAE), Universidade de Santiago de CompostelaINFN Laboratori Nazionali di FrascatiUniversiteit MaastrichtUniversity of Chinese Academy of SciencesINFN Sezione di Milano-BicoccaINFN Sezione di FerraraConsejo Nacional de Rectores (CONARE)INFN Sezione di BolognaInstituto Galego de Física de Altas Enerxías (IGFAE), Universidade de Santiago de CompostelaINFN Sezione di GenovaINFN Sezione di CagliariINFN Sezione di Milano-BicoccaPhysikalisches Institut, Ruprecht-Karls-Universität HeidelbergMassachusetts Institute of TechnologyPhysikalisches Institut, Ruprecht-Karls-Universität HeidelbergOliver Lodge Laboratory, University of LiverpoolConsejo Nacional de Rectores (CONARE)European Organization for Nuclear Research (CERN)INFN Sezione di FerraraINFN Sezione di FerraraPhysikalisches Institut, Ruprecht-Karls-Universität HeidelbergDepartment of Physics, University of OxfordINFN Sezione di MilanoOliver Lodge Laboratory, University of LiverpoolUniversity of MichiganLPNHE, Sorbonne Université, Paris Diderot Sorbonne Paris Cité, CNRS/IN2P3European Organization for Nuclear Research (CERN)Nikhef National Institute for Subatomic PhysicsUniversité Savoie Mont Blanc, CNRS, IN2P3-LAPPAix Marseille Univ, CNRS/IN2P3, CPPMInstitute Of High Energy Physics (IHEP)University of Chinese Academy of SciencesHenryk Niewodniczanski Institute of Nuclear Physics Polish Academy of SciencesInstitute for Nuclear Research of the National Academy of Sciences (KINR)Universiteit MaastrichtUniversidade da CoruñaInstitute of Physics, Ecole Polytechnique Fédérale de Lausanne (EPFL)Henryk Niewodniczanski Institute of Nuclear Physics Polish Academy of SciencesINFN Laboratori Nazionali di FrascatiInstituto Galego de Física de Altas Enerxías (IGFAE), Universidade de Santiago de CompostelaEuropean Organization for Nuclear Research (CERN)European Organization for Nuclear Research (CERN)School of Physics and Astronomy, University of EdinburghEuropean Organization for Nuclear Research (CERN)Cavendish Laboratory, University of CambridgeEuropean Organization for Nuclear Research (CERN)Physikalisches Institut, Ruprecht-Karls-Universität HeidelbergEuropean Organization for Nuclear Research (CERN)Aix Marseille Univ, CNRS/IN2P3, CPPMUniversité Clermont Auvergne, CNRS/IN2P3, LPCHoria Hulubei National Institute of Physics and Nuclear EngineeringEuropean Organization for Nuclear Research (CERN)European Organization for Nuclear Research (CERN)Fakultät Physik, Technische Universität DortmundICCUB, Universitat de BarcelonaINFN Sezione di BariINFN Sezione di CagliariSchool of Physics and Astronomy, University of GlasgowInstituto Galego de Física de Altas Enerxías (IGFAE), Universidade de Santiago de CompostelaLPNHE, Sorbonne Université, Paris Diderot Sorbonne Paris Cité, CNRS/IN2P3European Organization for Nuclear Research (CERN)H.H. Wills Physics Laboratory, University of BristolEuropean Organization for Nuclear Research (CERN)Physik-Institut, Universität ZürichCentro Brasileiro de Pesquisas Físicas (CBPF)Institute of Physics, Ecole Polytechnique Fédérale de Lausanne (EPFL)School of Physics and Astronomy, University of EdinburghLos Alamos National Laboratory (LANL)School of Physics and Electronics, Hunan UniversitySchool of Physics State Key Laboratory of Nuclear Physics and Technology, Peking UniversityFakultät Physik, Technische Universität DortmundInstituto Galego de Física de Altas Enerxías (IGFAE), Universidade de Santiago de CompostelaEuropean Organization for Nuclear Research (CERN)Université Clermont Auvergne, CNRS/IN2P3, LPCINFN Sezione di BariDepartment of Physics, University of WarwickDepartment of Physics and Astronomy, University of ManchesterDepartment of Physics and Astronomy, University of ManchesterDepartment of Physics and Astronomy, University of ManchesterINFN Sezione di CagliariEuropean Organization for Nuclear Research (CERN)Nikhef National Institute for Subatomic PhysicsVan Swinderen Institute, University of GroningenDepartment of Physics and Astronomy, University of ManchesterPhysikalisches Institut, Ruprecht-Karls-Universität HeidelbergCentro Brasileiro de Pesquisas Físicas (CBPF)INFN Laboratori Nazionali di FrascatiCentro Brasileiro de Pesquisas Físicas (CBPF)Universidade Federal do Rio de Janeiro (UFRJ)INFN Sezione di BariINFN Laboratori Nazionali di FrascatiFakultät Physik, Technische Universität DortmundUniversiteit MaastrichtINFN Sezione di BariUniversité Savoie Mont Blanc, CNRS, IN2P3-LAPPAix Marseille Univ, CNRS/IN2P3, CPPMSchool of Physics and Astronomy, Monash UniversityLPNHE, Sorbonne Université, Paris Diderot Sorbonne Paris Cité, CNRS/IN2P3Massachusetts Institute of TechnologyFakultät Physik, Technische Universität DortmundInstitute of Particle Physics, Central China Normal UniversityPhysik-Institut, Universität ZürichUniversité Clermont Auvergne, CNRS/IN2P3, LPCINFN Sezione di CagliariEotvos Lorand UniversityINFN Laboratori Nazionali di FrascatiSyracuse UniversityPhysikalisches Institut, Ruprecht-Karls-Universität HeidelbergInstitute for Nuclear Research of the National Academy of Sciences (KINR)School of Physics and Astronomy, University of GlasgowDepartment of Engineering Physics, Tsinghua UniversitySchool of Physics, University College DublinINFN Sezione di CagliariCentro Brasileiro de Pesquisas Físicas (CBPF)Syracuse UniversityGuangdong Provincial Key Laboratory of Nuclear Science, Guangdong-Hong Kong Joint Laboratory of Quantum Matter, Institute of Quantum Matter, South China Normal UniversityTadeusz Kosciuszko Cracow University of TechnologyHenryk Niewodniczanski Institute of Nuclear Physics Polish Academy of SciencesEuropean Organization for Nuclear Research (CERN)INFN Sezione di PerugiaEuropean Organization for Nuclear Research (CERN)Tadeusz Kosciuszko Cracow University of TechnologyLos Alamos National Laboratory (LANL)Eotvos Lorand UniversityHenryk Niewodniczanski Institute of Nuclear Physics Polish Academy of SciencesSTFC Rutherford Appleton LaboratoryUniversität Bonn - Helmholtz-Institut für Strahlen und KernphysikSchool of Physics and Astronomy, Monash UniversitySchool of Physics and Astronomy, University of EdinburghDepartment of Physics and Astronomy, University of ManchesterDepartment of Physics and Astronomy, Uppsala UniversityUniversity of CincinnatiFakultät Physik, Technische Universität DortmundImperial College LondonHoria Hulubei National Institute of Physics and Nuclear EngineeringUniversity of CincinnatiSyracuse UniversityPhysikalisches Institut, Ruprecht-Karls-Universität HeidelbergDepartment of Physics and Astronomy, University of ManchesterINFN Sezione di CagliariCentro Brasileiro de Pesquisas Físicas (CBPF)University of Chinese Academy of SciencesSchool of Physics and Technology, Wuhan UniversityINFN Sezione di PerugiaInstitute of Physics, Ecole Polytechnique Fédérale de Lausanne (EPFL)School of Physics and Astronomy, University of EdinburghINFN Sezione di Milano-BicoccaTadeusz Kosciuszko Cracow University of TechnologyInstitute Of High Energy Physics (IHEP)Fakultät Physik, Technische Universität DortmundInstituto de Fisica Corpuscular, Centro Mixto Universidad de Valencia – CSICInstituto Galego de Física de Altas Enerxías (IGFAE), Universidade de Santiago de CompostelaUniversity of MarylandINFN Sezione di BolognaUniversidade Federal do Rio de Janeiro (UFRJ)Physik-Institut, Universität ZürichEuropean Organization for Nuclear Research (CERN)INFN Sezione di BariINFN Sezione di FerraraAGH - University of Krakow, Faculty of Physics and Applied Computer ScienceDepartment of Physics, University of OxfordUniversity of MichiganDepartment of Physics and Astronomy, University of ManchesterAGH - University of Krakow, Faculty of Physics and Applied Computer ScienceLaboratoire Leprince-Ringuet, CNRS/IN2P3, Ecole Polytechnique, Institut Polytechnique de ParisINFN Sezione di BolognaDepartment of Physics and Astronomy, University of ManchesterEuropean Organization for Nuclear Research (CERN)Cavendish Laboratory, University of CambridgeUniversidade Federal do Rio de Janeiro (UFRJ)University of MarylandEuropean Organization for Nuclear Research (CERN)INFN Sezione di FerraraDepartment of Physics and Astronomy, University of ManchesterEuropean Organization for Nuclear Research (CERN)Department of Physics and Astronomy, University of ManchesterUniversity of Chinese Academy of SciencesFakultät Physik, Technische Universität DortmundSchool of Physics and Astronomy, Monash UniversityLPNHE, Sorbonne Université, Paris Diderot Sorbonne Paris Cité, CNRS/IN2P3Nikhef National Institute for Subatomic PhysicsINFN Sezione di BariNikhef National Institute for Subatomic PhysicsInstituto Galego de Física de Altas Enerxías (IGFAE), Universidade de Santiago de CompostelaINFN Sezione di BolognaSchool of Physics and Astronomy, University of EdinburghUniversidade Federal do Rio de Janeiro (UFRJ)INFN Sezione di MilanoDepartment of Physics and Astronomy, University of ManchesterUniversity of Chinese Academy of SciencesDepartment of Physics, University of OxfordCavendish Laboratory, University of CambridgeInstitute of Particle Physics, Central China Normal UniversitySchool of Physics State Key Laboratory of Nuclear Physics and Technology, Peking UniversityInstitute of Particle Physics, Central China Normal UniversityINFN Sezione di CagliariInstitute of Physics, Ecole Polytechnique Fédérale de Lausanne (EPFL)ICCUB, Universitat de BarcelonaEuropean Organization for Nuclear Research (CERN)Institute of Particle Physics, Central China Normal UniversityICCUB, Universitat de BarcelonaEuropean Organization for Nuclear Research (CERN)Nikhef National Institute for Subatomic PhysicsFakultät Physik, Technische Universität DortmundDepartment of Physics and Astronomy, University of ManchesterDepartment of Physics and Astronomy, University of ManchesterDepartment of Physics, University of WarwickINFN Sezione di GenovaH.H. Wills Physics Laboratory, University of BristolINFN Sezione di PadovaLPNHE, Sorbonne Université, Paris Diderot Sorbonne Paris Cité, CNRS/IN2P3Cavendish Laboratory, University of CambridgeNational Center for Nuclear Research (NCBJ)Department of Physics, University of OxfordINFN Laboratori Nazionali di FrascatiICCUB, Universitat de BarcelonaDepartment of Physics and Astronomy, University of ManchesterICCUB, Universitat de BarcelonaINFN Sezione di FerraraHenryk Niewodniczanski Institute of Nuclear Physics Polish Academy of SciencesImperial College LondonUniversité Paris-Saclay, CNRS/IN2P3, IJCLabLPNHE, Sorbonne Université, Paris Diderot Sorbonne Paris Cité, CNRS/IN2P3Pontifícia Universidade Católica do Rio de Janeiro (PUC-Rio)DS4DS, La Salle, Universitat Ramon LlullImperial College LondonCentro Brasileiro de Pesquisas Físicas (CBPF)ICCUB, Universitat de BarcelonaDepartment of Physics, University of OxfordHenryk Niewodniczanski Institute of Nuclear Physics Polish Academy of SciencesDepartment of Engineering Physics, Tsinghua UniversityFakultät Physik, Technische Universität DortmundINFN Sezione di Milano-BicoccaUniversität Bonn - Helmholtz-Institut für Strahlen und KernphysikEuropean Organization for Nuclear Research (CERN)ICCUB, Universitat de BarcelonaInstitute of Physics, Ecole Polytechnique Fédérale de Lausanne (EPFL)Department of Physics, University of WarwickHoria Hulubei National Institute of Physics and Nuclear EngineeringNikhef National Institute for Subatomic PhysicsUniversity of CincinnatiSchool of Physics and Astronomy, University of GlasgowLaboratoire Leprince-Ringuet, CNRS/IN2P3, Ecole Polytechnique, Institut Polytechnique de ParisINFN Sezione di FerraraUniversité Clermont Auvergne, CNRS/IN2P3, LPCUniversité Paris-Saclay, CNRS/IN2P3, IJCLabPhysikalisches Institut, Ruprecht-Karls-Universität HeidelbergInstitute of Physics, Ecole Polytechnique Fédérale de Lausanne (EPFL)School of Physics State Key Laboratory of Nuclear Physics and Technology, Peking UniversityEuropean Organization for Nuclear Research (CERN)Universität Bonn - Helmholtz-Institut für Strahlen und KernphysikSchool of Physics and Astronomy, Monash UniversityUniversity of MarylandInstitute of Physics, Ecole Polytechnique Fédérale de Lausanne (EPFL)European Organization for Nuclear Research (CERN)European Organization for Nuclear Research (CERN)European Organization for Nuclear Research (CERN)Department of Physics, University of WarwickEuropean Organization for Nuclear Research (CERN)University of MarylandOliver Lodge Laboratory, University of LiverpoolInstitute of Particle Physics, Central China Normal UniversityPhysikalisches Institut, Ruprecht-Karls-Universität HeidelbergPhysikalisches Institut, Ruprecht-Karls-Universität HeidelbergUniversity of Chinese Academy of SciencesDepartment of Physics, University of OxfordUniversité Paris-Saclay, CNRS/IN2P3, IJCLabAGH - University of Krakow, Faculty of Physics and Applied Computer ScienceUniversity of Chinese Academy of SciencesEuropean Organization for Nuclear Research (CERN)University of CincinnatiSchool of Physics and Astronomy, Monash UniversityEuropean Organization for Nuclear Research (CERN)Oliver Lodge Laboratory, University of LiverpoolInstitute of Physics, Ecole Polytechnique Fédérale de Lausanne (EPFL)Imperial College LondonPhysikalisches Institut, Ruprecht-Karls-Universität HeidelbergI. Physikalisches Institut, RWTH Aachen UniversityUniversidade Federal do Rio de Janeiro (UFRJ)Physik-Institut, Universität ZürichInstitute of Physics, Ecole Polytechnique Fédérale de Lausanne (EPFL)Fakultät Physik, Technische Universität DortmundDepartment of Physics and Astronomy, University of ManchesterInstitute of Particle Physics, Central China Normal UniversityUniversité Clermont Auvergne, CNRS/IN2P3, LPCOliver Lodge Laboratory, University of LiverpoolPhysikalisches Institut, Ruprecht-Karls-Universität HeidelbergGuangdong Provincial Key Laboratory of Nuclear Science, Guangdong-Hong Kong Joint Laboratory of Quantum Matter, Institute of Quantum Matter, South China Normal UniversitySchool of Physics State Key Laboratory of Nuclear Physics and Technology, Peking UniversityDepartment of Engineering Physics, Tsinghua UniversityUniversity of Chinese Academy of SciencesNikhef National Institute for Subatomic PhysicsDepartment of Physics, University of WarwickOliver Lodge Laboratory, University of LiverpoolAGH - University of Krakow, Faculty of Physics and Applied Computer ScienceUniversity of CincinnatiEuropean Organization for Nuclear Research (CERN)I. Physikalisches Institut, RWTH Aachen UniversityInstituto de Fisica Corpuscular, Centro Mixto Universidad de Valencia – CSICEuropean Organization for Nuclear Research (CERN)Nikhef National Institute for Subatomic PhysicsInstituto de Fisica Corpuscular, Centro Mixto Universidad de Valencia – CSICUniversity of MarylandFakultät Physik, Technische Universität DortmundUniversity of MarylandInstitute Of High Energy Physics (IHEP)University of Chinese Academy of SciencesSchool of Physics State Key Laboratory of Nuclear Physics and Technology, Peking UniversityDepartment of Physics, University of OxfordSchool of Physics, University College DublinSchool of Physics and Astronomy, University of BirminghamCavendish Laboratory, University of CambridgeDepartment of Physics, University of WarwickNational Center for Nuclear Research (NCBJ)European Organization for Nuclear Research (CERN)Cavendish Laboratory, University of CambridgeEuropean Organization for Nuclear Research (CERN)Henryk Niewodniczanski Institute of Nuclear Physics Polish Academy of SciencesInstitute of Physics, Ecole Polytechnique Fédérale de Lausanne (EPFL)NSC Kharkiv Institute of Physics and Technology (NSC KIPT)School of Physics and Astronomy, University of EdinburghDepartment of Engineering Physics, Tsinghua UniversityUniversité Clermont Auvergne, CNRS/IN2P3, LPCEuropean Organization for Nuclear Research (CERN)Institute of Physics, Ecole Polytechnique Fédérale de Lausanne (EPFL)University of CincinnatiHenryk Niewodniczanski Institute of Nuclear Physics Polish Academy of SciencesEuropean Organization for Nuclear Research (CERN)Cavendish Laboratory, University of CambridgeNikhef National Institute for Subatomic PhysicsSyracuse UniversityINFN Sezione di PisaUniversité Paris-Saclay, CNRS/IN2P3, IJCLabI. Physikalisches Institut, RWTH Aachen UniversityINFN Sezione di Milano-BicoccaMassachusetts Institute of TechnologyNikhef National Institute for Subatomic Physics and VU University AmsterdamINFN Sezione di PisaNational Center for Nuclear Research (NCBJ)National Center for Nuclear Research (NCBJ)Institute for Nuclear Research of the National Academy of Sciences (KINR)Fakultät Physik, Technische Universität DortmundAGH - University of Krakow, Faculty of Physics and Applied Computer ScienceNikhef National Institute for Subatomic PhysicsNikhef National Institute for Subatomic PhysicsInstitute for Nuclear Research of the National Academy of Sciences (KINR)Department of Physics, University of WarwickSyracuse UniversityNational Center for Nuclear Research (NCBJ)Institute for Nuclear Research of the National Academy of Sciences (KINR)Tadeusz Kosciuszko Cracow University of TechnologyHenryk Niewodniczanski Institute of Nuclear Physics Polish Academy of SciencesDepartment of Physics and Astronomy, Uppsala UniversityAix Marseille Univ, CNRS/IN2P3, CPPMEuropean Organization for Nuclear Research (CERN)ICCUB, Universitat de BarcelonaINFN Sezione di CagliariINFN Sezione di CagliariCavendish Laboratory, University of CambridgeInstituto Galego de Física de Altas Enerxías (IGFAE), Universidade de Santiago de CompostelaSchool of Physics and Astronomy, Monash UniversityH.H. Wills Physics Laboratory, University of BristolINFN Laboratori Nazionali di FrascatiPhysikalisches Institut, Ruprecht-Karls-Universität HeidelbergFakultät Physik, Technische Universität DortmundDepartment of Physics, University of WarwickINFN Sezione di PisaSchool of Physics and Astronomy, University of BirminghamAix Marseille Univ, CNRS/IN2P3, CPPMOliver Lodge Laboratory, University of LiverpoolUniversité Clermont Auvergne, CNRS/IN2P3, LPCDepartment of Physics, University of WarwickEuropean Organization for Nuclear Research (CERN)Aix Marseille Univ, CNRS/IN2P3, CPPMHenryk Niewodniczanski Institute of Nuclear Physics Polish Academy of SciencesEuropean Organization for Nuclear Research (CERN)Physikalisches Institut, Ruprecht-Karls-Universität HeidelbergDepartment of Engineering Physics, Tsinghua UniversityAix Marseille Univ, CNRS/IN2P3, CPPMGuangdong Provincial Key Laboratory of Nuclear Science, Guangdong-Hong Kong Joint Laboratory of Quantum Matter, Institute of Quantum Matter, South China Normal UniversityInstitute of Particle Physics, Central China Normal UniversityDepartment of Physics and Astronomy, University of ManchesterInstitute of Particle Physics, Central China Normal UniversityUniversity of Chinese Academy of SciencesLanzhou UniversityInstitute Of High Energy Physics (IHEP)Institute of Particle Physics, Central China Normal UniversityInstitute Of High Energy Physics (IHEP)Guangdong Provincial Key Laboratory of Nuclear Science, Guangdong-Hong Kong Joint Laboratory of Quantum Matter, Institute of Quantum Matter, South China Normal UniversityInstitute of Particle Physics, Central China Normal UniversityInstitute Of High Energy Physics (IHEP)Department of Engineering Physics, Tsinghua UniversitySyracuse UniversityInstituto de Fisica Corpuscular, Centro Mixto Universidad de Valencia – CSICUniversity of Chinese Academy of SciencesSTFC Rutherford Appleton LaboratoryEuropean Organization for Nuclear Research (CERN)Institute of Physics, Ecole Polytechnique Fédérale de Lausanne (EPFL)INFN Sezione di CagliariSchool of Physics and Astronomy, Monash UniversityGuangdong Provincial Key Laboratory of Nuclear Science, Guangdong-Hong Kong Joint Laboratory of Quantum Matter, Institute of Quantum Matter, South China Normal UniversityLanzhou UniversityInstitute Of High Energy Physics (IHEP)Institute of Particle Physics, Central China Normal UniversitySchool of Physics and Astronomy, University of EdinburghLanzhou UniversityImperial College LondonICCUB, Universitat de BarcelonaINFN Sezione di CagliariInstituto Galego de Física de Altas Enerxías (IGFAE), Universidade de Santiago de CompostelaCavendish Laboratory, University of CambridgeUniversidade Federal do Rio de Janeiro (UFRJ)ICCUB, Universitat de BarcelonaInstituto Galego de Física de Altas Enerxías (IGFAE), Universidade de Santiago de CompostelaLaboratoire Leprince-Ringuet, CNRS/IN2P3, Ecole Polytechnique, Institut Polytechnique de ParisINFN Sezione di FirenzeINFN Sezione di PadovaUniversiteit MaastrichtNikhef National Institute for Subatomic PhysicsSchool of Physics State Key Laboratory of Nuclear Physics and Technology, Peking UniversityINFN Sezione di PadovaINFN Sezione di FerraraSchool of Physics, University College DublinUniversity of Chinese Academy of SciencesDepartment of Engineering Physics, Tsinghua UniversityUniversity of Chinese Academy of SciencesFakultät Physik, Technische Universität DortmundUniversité Paris-Saclay, CNRS/IN2P3, IJCLabHoria Hulubei National Institute of Physics and Nuclear EngineeringSyracuse UniversityDepartment of Physics, University of OxfordSyracuse UniversityCavendish Laboratory, University of CambridgeSchool of Physics and Astronomy, University of BirminghamNikhef National Institute for Subatomic PhysicsAGH - University of Krakow, Faculty of Physics and Applied Computer ScienceHenryk Niewodniczanski Institute of Nuclear Physics Polish Academy of SciencesDepartment of Physics, University of OxfordEuropean Organization for Nuclear Research (CERN)INFN Sezione di CagliariAix Marseille Univ, CNRS/IN2P3, CPPMINFN Sezione di MilanoICCUB, Universitat de BarcelonaINFN Sezione di BolognaINFN Sezione di MilanoUniversité Savoie Mont Blanc, CNRS, IN2P3-LAPPInstitute of Physics, Ecole Polytechnique Fédérale de Lausanne (EPFL)INFN Sezione di BolognaLPNHE, Sorbonne Université, Paris Diderot Sorbonne Paris Cité, CNRS/IN2P3European Organization for Nuclear Research (CERN)ICCUB, Universitat de BarcelonaPhysikalisches Institut, Ruprecht-Karls-Universität HeidelbergH.H. Wills Physics Laboratory, University of BristolDepartment of Physics, University of OxfordINFN Sezione di PerugiaINFN Sezione di Roma La SapienzaEuropean Organization for Nuclear Research (CERN)INFN Sezione di Milano-BicoccaInstituto Galego de Física de Altas Enerxías (IGFAE), Universidade de Santiago de CompostelaInstituto de Fisica Corpuscular, Centro Mixto Universidad de Valencia – CSICCentro Brasileiro de Pesquisas Físicas (CBPF)European Organization for Nuclear Research (CERN)European Organization for Nuclear Research (CERN)Syracuse UniversityLaboratoire Leprince-Ringuet, CNRS/IN2P3, Ecole Polytechnique, Institut Polytechnique de ParisImperial College LondonLaboratoire Leprince-Ringuet, CNRS/IN2P3, Ecole Polytechnique, Institut Polytechnique de ParisICCUB, Universitat de BarcelonaInstitute of Physics, Ecole Polytechnique Fédérale de Lausanne (EPFL)Instituto de Fisica Corpuscular, Centro Mixto Universidad de Valencia – CSICNational Center for Nuclear Research (NCBJ)Imperial College LondonSchool of Physics, University College DublinDepartment of Physics and Astronomy, University of ManchesterSchool of Physics and Astronomy, University of GlasgowDepartment of Physics and Astronomy, University of ManchesterSchool of Physics, University College DublinUniversity of CincinnatiFakultät Physik, Technische Universität DortmundNational Center for Nuclear Research (NCBJ)Department of Engineering Physics, Tsinghua UniversityNikhef National Institute for Subatomic PhysicsInstitute of Physics, Ecole Polytechnique Fédérale de Lausanne (EPFL)University of MarylandInstitute Of High Energy Physics (IHEP)University of Chinese Academy of SciencesRuhr Universitaet Bochum, Fakultaet f. Physik und AstronomieDepartamento de Fisica, Universidad Nacional de ColombiaINFN Sezione di Milano-BicoccaSyracuse UniversityUniversité Clermont Auvergne, CNRS/IN2P3, LPCFakultät Physik, Technische Universität DortmundFakultät Physik, Technische Universität DortmundSTFC Rutherford Appleton LaboratoryDepartment of Physics, University of OxfordI. Physikalisches Institut, RWTH Aachen UniversityUniversity of MichiganEuropean Organization for Nuclear Research (CERN)Department of Physics, University of WarwickUniversité Clermont Auvergne, CNRS/IN2P3, LPCInstituto Galego de Física de Altas Enerxías (IGFAE), Universidade de Santiago de CompostelaINFN Laboratori Nazionali di FrascatiINFN Sezione di PisaPhysikalisches Institut, Ruprecht-Karls-Universität HeidelbergAGH - University of Krakow, Faculty of Physics and Applied Computer ScienceEuropean Organization for Nuclear Research (CERN)Aix Marseille Univ, CNRS/IN2P3, CPPMSyracuse UniversityDepartment of Engineering Physics, Tsinghua UniversitySchool of Physics State Key Laboratory of Nuclear Physics and Technology, Peking UniversityDepartment of Physics, University of WarwickSchool of Physics and Astronomy, University of EdinburghVan Swinderen Institute, University of GroningenPhysik-Institut, Universität ZürichConsejo Nacional de Rectores (CONARE)Imperial College LondonOliver Lodge Laboratory, University of LiverpoolInstitute of Physics, Ecole Polytechnique Fédérale de Lausanne (EPFL)STFC Rutherford Appleton LaboratoryEuropean Organization for Nuclear Research (CERN)Universidade Federal do Rio de Janeiro (UFRJ)School of Physics and Astronomy, University of EdinburghINFN Sezione di MilanoUniversität Bonn - Helmholtz-Institut für Strahlen und KernphysikEuropean Organization for Nuclear Research (CERN)Fakultät Physik, Technische Universität DortmundUniversiteit MaastrichtInstitute of Physics, Ecole Polytechnique Fédérale de Lausanne (EPFL)Universidade Federal do Rio de Janeiro (UFRJ)Universität Bonn - Helmholtz-Institut für Strahlen und KernphysikH.H. Wills Physics Laboratory, University of BristolInstituto Galego de Física de Altas Enerxías (IGFAE), Universidade de Santiago de CompostelaUniversity of CincinnatiUniversity of MichiganSchool of Physics and Astronomy, University of GlasgowAGH - University of Krakow, Faculty of Physics and Applied Computer ScienceI. Physikalisches Institut, RWTH Aachen UniversityINFN Sezione di FerraraInstitute for Nuclear Research of the National Academy of Sciences (KINR)INFN Sezione di CagliariSchool of Physics and Astronomy, University of EdinburghFakultät Physik, Technische Universität DortmundUniversiteit MaastrichtSchool of Physics and Astronomy, University of EdinburghFakultät Physik, Technische Universität DortmundUniversidade Federal do Rio de Janeiro (UFRJ)Physik-Institut, Universität ZürichInstituto de Fisica Corpuscular, Centro Mixto Universidad de Valencia – CSICSchool of Physics and Astronomy, University of EdinburghINFN Sezione di PisaNational Center for Nuclear Research (NCBJ)Universität Bonn - Helmholtz-Institut für Strahlen und KernphysikDepartment of Physics, University of WarwickPhysikalisches Institut, Ruprecht-Karls-Universität HeidelbergEuropean Organization for Nuclear Research (CERN)INFN Sezione di BariINFN Laboratori Nazionali di FrascatiDepartment of Physics, University of WarwickSTFC Rutherford Appleton LaboratoryINFN Sezione di BariINFN Sezione di FerraraUniversity of CincinnatiDepartment of Physics and Astronomy, University of ManchesterINFN Sezione di FerraraINFN Sezione di FirenzeINFN Sezione di PisaINFN Sezione di BariImperial College LondonDepartment of Physics, University of OxfordINFN Sezione di BolognaSyracuse UniversityUniversiteit MaastrichtNikhef National Institute for Subatomic PhysicsInstitute Of High Energy Physics (IHEP)INFN Laboratori Nazionali di FrascatiINFN Sezione di BolognaLos Alamos National Laboratory (LANL)Instituto Galego de Física de Altas Enerxías (IGFAE), Universidade de Santiago de CompostelaUniversité Clermont Auvergne, CNRS/IN2P3, LPCEuropean Organization for Nuclear Research (CERN)H.H. Wills Physics Laboratory, University of BristolINFN Sezione di GenovaUniversity of CincinnatiSyracuse UniversityINFN Sezione di PisaINFN Sezione di PerugiaINFN Sezione di CagliariUniversité Savoie Mont Blanc, CNRS, IN2P3-LAPPUniversité Paris-Saclay, CNRS/IN2P3, IJCLabINFN Sezione di Roma La SapienzaEuropean Organization for Nuclear Research (CERN)INFN Sezione di Milano-BicoccaHoria Hulubei National Institute of Physics and Nuclear EngineeringInstituto Galego de Física de Altas Enerxías (IGFAE), Universidade de Santiago de CompostelaEuropean Organization for Nuclear Research (CERN)LPNHE, Sorbonne Université, Paris Diderot Sorbonne Paris Cité, CNRS/IN2P3INFN Laboratori Nazionali di FrascatiAix Marseille Univ, CNRS/IN2P3, CPPMUniversidade Federal do Rio de Janeiro (UFRJ)European Organization for Nuclear Research (CERN)University of Chinese Academy of SciencesSchool of Physics and Astronomy, University of EdinburghInstituto Galego de Física de Altas Enerxías (IGFAE), Universidade de Santiago de CompostelaINFN Sezione di CagliariInstitute for Nuclear Research of the National Academy of Sciences (KINR)INFN Sezione di PisaPhysik-Institut, Universität ZürichSchool of Physics State Key Laboratory of Nuclear Physics and Technology, Peking UniversityUniversity of Chinese Academy of SciencesDepartment of Engineering Physics, Tsinghua UniversityDepartment of Engineering Physics, Tsinghua UniversityEuropean Organization for Nuclear Research (CERN)Department of Physics, University of WarwickH.H. Wills Physics Laboratory, University of BristolINFN Sezione di PisaUniversity of MichiganPontifícia Universidade Católica do Rio de Janeiro (PUC-Rio)Department of Physics, University of WarwickUniversidade Federal do Rio de Janeiro (UFRJ)Nikhef National Institute for Subatomic Physics and VU University AmsterdamInstituto de Fisica Corpuscular, Centro Mixto Universidad de Valencia – CSICINFN Sezione di MilanoH.H. Wills Physics Laboratory, University of BristolDepartment of Physics and Astronomy, University of ManchesterUniversity of Chinese Academy of SciencesDepartment of Physics, University of OxfordInstitute of Physics, Ecole Polytechnique Fédérale de Lausanne (EPFL)Laboratoire Leprince-Ringuet, CNRS/IN2P3, Ecole Polytechnique, Institut Polytechnique de ParisINFN Sezione di PisaSTFC Rutherford Appleton LaboratoryMassachusetts Institute of TechnologySchool of Physics and Astronomy, University of EdinburghOliver Lodge Laboratory, University of LiverpoolUniversité Paris-Saclay, CNRS/IN2P3, IJCLabSchool of Physics and Astronomy, University of GlasgowOliver Lodge Laboratory, University of LiverpoolInstituto Galego de Física de Altas Enerxías (IGFAE), Universidade de Santiago de CompostelaDepartamento de Fisica, Universidad Nacional de ColombiaInstituto Galego de Física de Altas Enerxías (IGFAE), Universidade de Santiago de CompostelaFakultät Physik, Technische Universität DortmundSTFC Rutherford Appleton LaboratoryEuropean Organization for Nuclear Research (CERN)European Organization for Nuclear Research (CERN)University of CincinnatiInstituto Galego de Física de Altas Enerxías (IGFAE), Universidade de Santiago de CompostelaInstituto Galego de Física de Altas Enerxías (IGFAE), Universidade de Santiago de CompostelaINFN Sezione di FerraraInstitute of Physics, Ecole Polytechnique Fédérale de Lausanne (EPFL)School of Physics State Key Laboratory of Nuclear Physics and Technology, Peking UniversityINFN Laboratori Nazionali di FrascatiPhysikalisches Institut, Ruprecht-Karls-Universität HeidelbergSyracuse UniversityPhysikalisches Institut, Ruprecht-Karls-Universität HeidelbergInstituto Galego de Física de Altas Enerxías (IGFAE), Universidade de Santiago de CompostelaDepartment of Physics and Astronomy, Uppsala UniversityAGH - University of Krakow, Faculty of Physics and Applied Computer ScienceConsejo Nacional de Rectores (CONARE)Instituto Galego de Física de Altas Enerxías (IGFAE), Universidade de Santiago de CompostelaLaboratoire Leprince-Ringuet, CNRS/IN2P3, Ecole Polytechnique, Institut Polytechnique de ParisEotvos Lorand UniversitySchool of Physics and Astronomy, University of BirminghamINFN Sezione di CagliariINFN Sezione di Milano-BicoccaInstituto de Fisica Corpuscular, Centro Mixto Universidad de Valencia – CSICINFN Sezione di Roma La SapienzaInstituto Galego de Física de Altas Enerxías (IGFAE), Universidade de Santiago de CompostelaINFN Laboratori Nazionali di FrascatiCentro Brasileiro de Pesquisas Físicas (CBPF)INFN Sezione di Roma Tor VergataINFN Sezione di FerraraVan Swinderen Institute, University of GroningenSchool of Physics and Astronomy, University of EdinburghDepartment of Physics and Astronomy, University of ManchesterINFN Sezione di Roma La SapienzaINFN Sezione di Roma Tor VergataSchool of Physics State Key Laboratory of Nuclear Physics and Technology, Peking UniversityI. Physikalisches Institut, RWTH Aachen UniversityEuropean Organization for Nuclear Research (CERN)Department of Physics, University of OxfordFakultät Physik, Technische Universität DortmundI. Physikalisches Institut, RWTH Aachen UniversityOliver Lodge Laboratory, University of LiverpoolSchool of Physics and Astronomy, University of GlasgowEuropean Organization for Nuclear Research (CERN)Max-Planck-Institut für Kernphysik (MPIK)European Organization for Nuclear Research (CERN)I. Physikalisches Institut, RWTH Aachen UniversityUniversität Bonn - Helmholtz-Institut für Strahlen und KernphysikInstitute of Physics, Ecole Polytechnique Fédérale de Lausanne (EPFL)European Organization for Nuclear Research (CERN)Fakultät Physik, Technische Universität DortmundInstitute of Physics, Ecole Polytechnique Fédérale de Lausanne (EPFL)Université Paris-Saclay, CNRS/IN2P3, IJCLabEuropean Organization for Nuclear Research (CERN)I. Physikalisches Institut, RWTH Aachen UniversityINFN Laboratori Nazionali di FrascatiEuropean Organization for Nuclear Research (CERN)Instituto Galego de Física de Altas Enerxías (IGFAE), Universidade de Santiago de CompostelaPhysik-Institut, Universität ZürichNikhef National Institute for Subatomic Physics and VU University AmsterdamINFN Sezione di GenovaPhysik-Institut, Universität ZürichINFN Sezione di PadovaFakultät Physik, Technische Universität DortmundSchool of Physics State Key Laboratory of Nuclear Physics and Technology, Peking UniversityUniversity of MichiganSyracuse UniversityInstitute of Physics, Ecole Polytechnique Fédérale de Lausanne (EPFL)Oliver Lodge Laboratory, University of LiverpoolSchool of Physics State Key Laboratory of Nuclear Physics and Technology, Peking UniversityInstitute Of High Energy Physics (IHEP)University of Chinese Academy of SciencesUniversity of Chinese Academy of SciencesUniversité Paris-Saclay, CNRS/IN2P3, IJCLabINFN Sezione di BolognaSyracuse UniversitySyracuse UniversityINFN Sezione di PadovaINFN Sezione di BariDepartment of Physics, University of WarwickSyracuse UniversitySchool of Physics and Astronomy, University of BirminghamDepartment of Physics, University of OxfordMassachusetts Institute of TechnologyLos Alamos National Laboratory (LANL)Imperial College LondonNikhef National Institute for Subatomic PhysicsSchool of Physics and Astronomy, University of EdinburghUniversity of CincinnatiSchool of Physics and Astronomy, University of GlasgowH.H. Wills Physics Laboratory, University of BristolSchool of Physics and Astronomy, Monash UniversityInstitute of Physics, Ecole Polytechnique Fédérale de Lausanne (EPFL)Department of Engineering Physics, Tsinghua UniversitySchool of Physics State Key Laboratory of Nuclear Physics and Technology, Peking UniversitySyracuse UniversityUniversidade Federal do Rio de Janeiro (UFRJ)INFN Sezione di GenovaINFN Sezione di BolognaFakultät Physik, Technische Universität DortmundSchool of Physics and Astronomy, University of GlasgowEuropean Organization for Nuclear Research (CERN)European Organization for Nuclear Research (CERN)European Organization for Nuclear Research (CERN)European Organization for Nuclear Research (CERN)Department of Physics, University of OxfordEuropean Organization for Nuclear Research (CERN)Physik-Institut, Universität ZürichFakultät Physik, Technische Universität DortmundUniversity of Chinese Academy of SciencesDepartment of Physics, University of OxfordINFN Sezione di CagliariSchool of Physics and Technology, Wuhan UniversityUniversity of MarylandCentro Brasileiro de Pesquisas Físicas (CBPF)Physik-Institut, Universität ZürichSchool of Physics and Astronomy, University of BirminghamAGH - University of Krakow, Faculty of Physics and Applied Computer ScienceCavendish Laboratory, University of CambridgeNational Center for Nuclear Research (NCBJ)AGH - University of Krakow, Faculty of Physics and Applied Computer ScienceDepartment of Engineering Physics, Tsinghua UniversityDepartment of Physics, University of OxfordINFN Sezione di PisaEuropean Organization for Nuclear Research (CERN)European Organization for Nuclear Research (CERN)School of Physics and Astronomy, University of BirminghamImperial College LondonUniversité Clermont Auvergne, CNRS/IN2P3, LPCUniversité Savoie Mont Blanc, CNRS, IN2P3-LAPPInstitute Of High Energy Physics (IHEP)INFN Sezione di FerraraINFN Sezione di MilanoSchool of Physics State Key Laboratory of Nuclear Physics and Technology, Peking UniversityCentro Brasileiro de Pesquisas Físicas (CBPF)Fakultät Physik, Technische Universität DortmundDepartment of Engineering Physics, Tsinghua UniversityDS4DS, La Salle, Universitat Ramon LlullPhysikalisches Institut, Ruprecht-Karls-Universität HeidelbergNikhef National Institute for Subatomic PhysicsPhysikalisches Institut, Ruprecht-Karls-Universität HeidelbergAGH - University of Krakow, Faculty of Physics and Applied Computer SciencePhysikalisches Institut, Ruprecht-Karls-Universität HeidelbergNikhef National Institute for Subatomic Physics and VU University AmsterdamPhysikalisches Institut, Ruprecht-Karls-Universität HeidelbergINFN Sezione di BolognaInstituto Galego de Física de Altas Enerxías (IGFAE), Universidade de Santiago de CompostelaINFN Sezione di BolognaEuropean Organization for Nuclear Research (CERN)Los Alamos National Laboratory (LANL)Imperial College LondonInstituto Galego de Física de Altas Enerxías (IGFAE), Universidade de Santiago de CompostelaInstitute of Physics, Ecole Polytechnique Fédérale de Lausanne (EPFL)Nikhef National Institute for Subatomic PhysicsPhysik-Institut, Universität ZürichICCUB, Universitat de BarcelonaInstituto Galego de Física de Altas Enerxías (IGFAE), Universidade de Santiago de CompostelaInstituto Galego de Física de Altas Enerxías (IGFAE), Universidade de Santiago de CompostelaINFN Sezione di FerraraH.H. Wills Physics Laboratory, University of BristolINFN Sezione di FirenzeInstitute of Physics, Ecole Polytechnique Fédérale de Lausanne (EPFL)INFN Sezione di CagliariDepartment of Physics, University of WarwickDepartment of Physics, University of OxfordICCUB, Universitat de BarcelonaEuropean Organization for Nuclear Research (CERN)DS4DS, La Salle, Universitat Ramon LlullOliver Lodge Laboratory, University of LiverpoolINFN Sezione di BolognaLPNHE, Sorbonne Université, Paris Diderot Sorbonne Paris Cité, CNRS/IN2P3School of Physics and Astronomy, University of BirminghamAix Marseille Univ, CNRS/IN2P3, CPPMUniversiteit MaastrichtUniversité Savoie Mont Blanc, CNRS, IN2P3-LAPPSchool of Physics and Astronomy, University of EdinburghFakultät Physik, Technische Universität DortmundINFN Sezione di PisaSchool of Physics and Astronomy, Monash UniversitySchool of Physics State Key Laboratory of Nuclear Physics and Technology, Peking UniversityPhysikalisches Institut, Ruprecht-Karls-Universität HeidelbergInstitute of Particle Physics, Central China Normal UniversitySchool of Physics State Key Laboratory of Nuclear Physics and Technology, Peking UniversityInstitute Of High Energy Physics (IHEP)Department of Engineering Physics, Tsinghua UniversitySchool of Physics and Technology, Wuhan UniversityINFN Sezione di MilanoUniversity of Chinese Academy of SciencesH.H. Wills Physics Laboratory, University of BristolInstitute of Particle Physics, Central China Normal UniversityGuangdong Provincial Key Laboratory of Nuclear Science, Guangdong-Hong Kong Joint Laboratory of Quantum Matter, Institute of Quantum Matter, South China Normal UniversityImperial College LondonSchool of Physics State Key Laboratory of Nuclear Physics and Technology, Peking UniversityUniversité Paris-Saclay, CNRS/IN2P3, IJCLabDepartment of Engineering Physics, Tsinghua UniversityINFN Sezione di MilanoDepartment of Physics, University of WarwickEuropean Organization for Nuclear Research (CERN)School of Physics and Astronomy, University of BirminghamImperial College LondonSchool of Physics State Key Laboratory of Nuclear Physics and Technology, Peking UniversityUniversidade da CoruñaH.H. Wills Physics Laboratory, University of BristolCavendish Laboratory, University of CambridgeSchool of Physics and Astronomy, University of GlasgowSchool of Physics and Astronomy, University of BirminghamDepartment of Physics and Astronomy, University of ManchesterFakultät Physik, Technische Universität DortmundDepartment of Physics, University of OxfordUniversity of CincinnatiMassachusetts Institute of TechnologySchool of Physics and Astronomy, University of EdinburghCavendish Laboratory, University of CambridgeH.H. Wills Physics Laboratory, University of BristolSTFC Rutherford Appleton LaboratoryNational Center for Nuclear Research (NCBJ)Henryk Niewodniczanski Institute of Nuclear Physics Polish Academy of SciencesPhysikalisches Institut, Ruprecht-Karls-Universität HeidelbergUniversité Paris-Saclay, CNRS/IN2P3, IJCLabCavendish Laboratory, University of CambridgeSyracuse UniversityInstitute of Particle Physics, Central China Normal UniversitySchool of Physics State Key Laboratory of Nuclear Physics and Technology, Peking UniversityUniversity of Chinese Academy of SciencesEuropean Organization for Nuclear Research (CERN)Guangdong Provincial Key Laboratory of Nuclear Science, Guangdong-Hong Kong Joint Laboratory of Quantum Matter, Institute of Quantum Matter, South China Normal UniversityInstitute Of High Energy Physics (IHEP)Institute of Particle Physics, Central China Normal UniversityINFN Sezione di PisaUniversity of Chinese Academy of SciencesDepartment of Engineering Physics, Tsinghua UniversityDepartment of Engineering Physics, Tsinghua UniversityDepartment of Physics, University of WarwickEuropean Organization for Nuclear Research (CERN)University of Chinese Academy of SciencesInstitute Of High Energy Physics (IHEP)Department of Engineering Physics, Tsinghua UniversityImperial College LondonUniversity of Chinese Academy of SciencesSchool of Physics State Key Laboratory of Nuclear Physics and Technology, Peking UniversityINFN Sezione di GenovaSchool of Physics State Key Laboratory of Nuclear Physics and Technology, Peking UniversityUniversity of MarylandUniversité Paris-Saclay, CNRS/IN2P3, IJCLabDepartment of Physics and Astronomy, University of ManchesterInstitute of Particle Physics, Central China Normal UniversityUniversity of Chinese Academy of SciencesSchool of Physics State Key Laboratory of Nuclear Physics and Technology, Peking UniversitySchool of Physics and Electronics, Hunan UniversityInstitute Of High Energy Physics (IHEP)Institute Of High Energy Physics (IHEP)Institute of Physics, Ecole Polytechnique Fédérale de Lausanne (EPFL)Max-Planck-Institut für Kernphysik (MPIK)Henryk Niewodniczanski Institute of Nuclear Physics Polish Academy of SciencesINFN Sezione di BolognaInstitute Of High Energy Physics (IHEP)Department of Engineering Physics, Tsinghua UniversitySchool of Physics State Key Laboratory of Nuclear Physics and Technology, Peking UniversityInstitute of Particle Physics, Central China Normal UniversityUniversity of Chinese Academy of SciencesDepartment of Engineering Physics, Tsinghua UniversitySchool of Physics and Electronics, Hunan UniversityDepartment of Physics, University of OxfordSchool of Physics State Key Laboratory of Nuclear Physics and Technology, Peking UniversityDepartment of Engineering Physics, Tsinghua UniversityPhysikalisches Institut, Ruprecht-Karls-Universität HeidelbergPhysikalisches Institut, Ruprecht-Karls-Universität HeidelbergSchool of Physics State Key Laboratory of Nuclear Physics and Technology, Peking UniversityDepartment of Engineering Physics, Tsinghua UniversityUniversity of Chinese Academy of SciencesSchool of Physics State Key Laboratory of Nuclear Physics and Technology, Peking UniversityInstitute of Particle Physics, Central China Normal UniversityUniversity of Chinese Academy of SciencesDepartment of Physics, University of WarwickUniversity of Chinese Academy of SciencesDepartment of Engineering Physics, Tsinghua UniversityInstitute of Particle Physics, Central China Normal UniversityI. Physikalisches Institut, RWTH Aachen UniversityInstituto de Fisica Corpuscular, Centro Mixto Universidad de Valencia – CSICInstitute Of High Energy Physics (IHEP)INFN Sezione di PadovaInstitute of Physics, Ecole Polytechnique Fédérale de Lausanne (EPFL)Abstract The differential branching fraction and angular coefficients of Λ b 0 $$ {\Lambda}_b^0 $$ → pK − μ + μ − decays are measured in bins of the dimuon mass squared and dihadron mass. The analysis is performed using a data set corresponding to 9 fb −1 of integrated luminosity collected with the LHCb detector between 2011 and 2018. The data are consistent with receiving contributions from a mixture of Λ resonances with different spin-parity quantum numbers. The angular coefficients show a pattern of vector-axial vector interference that is a characteristic of the type of flavour-changing neutral-current transition relevant for these decays.https://doi.org/10.1007/JHEP12(2024)147B PhysicsFlavour Changing Neutral CurrentsFlavour PhysicsHadron-Hadron Scattering |
spellingShingle | The LHCb collaboration R. Aaij A. S. W. Abdelmotteleb C. Abellan Beteta F. Abudinén T. Ackernley A. A. Adefisoye B. Adeva M. Adinolfi P. Adlarson C. Agapopoulou C. A. Aidala Z. Ajaltouni S. Akar K. Akiba P. Albicocco J. Albrecht F. Alessio M. Alexander Z. Aliouche P. Alvarez Cartelle R. Amalric S. Amato J. L. Amey Y. Amhis L. An L. Anderlini M. Andersson A. Andreianov P. Andreola M. Andreotti D. Andreou A. Anelli D. Ao F. Archilli M. Argenton S. Arguedas Cuendis A. Artamonov M. Artuso E. Aslanides R. Ataíde Da Silva M. Atzeni B. Audurier D. Bacher I. Bachiller Perea S. Bachmann M. Bachmayer J. J. Back P. Baladron Rodriguez V. Balagura W. Baldini L. Balzani H. Bao J. Baptista de Souza Leite C. Barbero Pretel M. Barbetti I. R. Barbosa R. J. Barlow M. Barnyakov S. Barsuk W. Barter M. Bartolini J. Bartz J. M. Basels S. Bashir G. Bassi B. Batsukh P. B. Battista A. Bay A. Beck M. Becker F. Bedeschi I. B. Bediaga N. A. Behling S. Belin V. Bellee K. Belous I. Belov I. Belyaev G. Benane G. Bencivenni E. Ben-Haim A. Berezhnoy R. Bernet S. Bernet Andres A. Bertolin C. Betancourt F. Betti J. Bex Ia. Bezshyiko J. Bhom M. S. Bieker N. V. Biesuz P. Billoir A. Biolchini M. Birch F. C. R. Bishop A. Bitadze A. Bizzeti T. Blake F. Blanc J. E. Blank S. Blusk V. Bocharnikov J. A. Boelhauve O. Boente Garcia T. Boettcher A. Bohare A. Boldyrev C. S. Bolognani R. Bolzonella N. Bondar A. Bordelius F. Borgato S. Borghi M. Borsato J. T. Borsuk S. A. Bouchiba M. Bovill T. J. V. Bowcock A. Boyer C. Bozzi A. Brea Rodriguez N. Breer J. Brodzicka A. Brossa Gonzalo J. Brown D. Brundu E. Buchanan A. Buonaura L. Buonincontri A. T. Burke C. Burr J. S. Butter J. Buytaert W. Byczynski S. Cadeddu H. Cai A. C. Caillet R. Calabrese S. Calderon Ramirez L. Calefice S. Cali M. Calvi M. Calvo Gomez P. Camargo Magalhaes J. I. Cambon Bouzas P. Campana D. H. Campora Perez A. F. Campoverde Quezada S. Capelli L. Capriotti R. Caravaca-Mora A. Carbone L. Carcedo Salgado R. Cardinale A. Cardini P. Carniti L. Carus A. Casais Vidal R. Caspary G. Casse J. Castro Godinez M. Cattaneo G. Cavallero V. Cavallini S. Celani D. Cervenkov S. Cesare A. J. Chadwick I. Chahrour M. Charles Ph. Charpentier E. Chatzianagnostou M. Chefdeville C. Chen S. Chen Z. Chen A. Chernov S. Chernyshenko X. Chiotopoulos V. Chobanova S. Cholak M. Chrzaszcz A. Chubykin V. Chulikov P. Ciambrone X. Cid Vidal G. Ciezarek P. Cifra P. E. L. Clarke M. Clemencic H. V. Cliff J. Closier C. Cocha Toapaxi V. Coco J. Cogan E. Cogneras L. Cojocariu P. Collins T. Colombo M. C. Colonna A. Comerma-Montells L. Congedo A. Contu N. Cooke I. Corredoira A. Correia G. Corti J. J. Cottee Meldrum B. Couturier D. C. Craik M. Cruz Torres E. Curras Rivera R. Currie C. L. Da Silva S. Dadabaev L. Dai X. Dai E. Dall’Occo J. Dalseno C. D’Ambrosio J. Daniel A. Danilina P. d’Argent A. Davidson J. E. Davies A. Davis O. De Aguiar Francisco C. De Angelis F. De Benedetti J. de Boer K. De Bruyn S. De Capua M. De Cian U. De Freitas Carneiro Da Graca E. De Lucia J. M. De Miranda L. De Paula M. De Serio P. De Simone F. De Vellis J. A. de Vries F. Debernardis D. Decamp V. Dedu S. Dekkers L. Del Buono B. Delaney H.-P. Dembinski J. Deng V. Denysenko O. Deschamps F. Dettori B. Dey P. Di Nezza I. Diachkov S. Didenko S. Ding L. Dittmann V. Dobishuk A. D. Docheva C. Dong A. M. Donohoe F. Dordei A. C. dos Reis A. D. Dowling W. Duan P. Duda M. W. Dudek L. Dufour V. Duk P. Durante M. M. Duras J. M. Durham O. D. Durmus A. Dziurda A. Dzyuba S. Easo E. Eckstein U. Egede A. Egorychev V. Egorychev S. Eisenhardt E. Ejopu L. Eklund M. Elashri J. Ellbracht S. Ely A. Ene E. Epple J. Eschle S. Esen T. Evans F. Fabiano L. N. Falcao Y. Fan B. Fang L. Fantini M. Faria K. Farmer D. Fazzini L. Felkowski M. Feng M. Feo A. Fernandez Casani M. Fernandez Gomez A. D. Fernez F. Ferrari F. Ferreira Rodrigues M. Ferrillo M. Ferro-Luzzi S. Filippov R. A. Fini M. Fiorini M. Firlej K. L. Fischer D. S. Fitzgerald C. Fitzpatrick T. Fiutowski F. Fleuret M. Fontana L. F. Foreman R. Forty D. Foulds-Holt V. Franco Lima M. Franco Sevilla M. Frank E. Franzoso G. Frau C. Frei D. A. Friday J. Fu Q. Führing Y. Fujii T. Fulghesu E. Gabriel G. Galati M. D. Galati A. Gallas Torreira D. Galli S. Gambetta M. Gandelman P. Gandini B. Ganie H. Gao R. Gao T. Q. Gao Y. Gao Y. Gao Y. Gao M. Garau L. M. Garcia Martin P. Garcia Moreno J. García Pardiñas K. G. Garg L. Garrido C. Gaspar R. E. Geertsema L. L. Gerken E. Gersabeck M. Gersabeck T. Gershon S. Ghizzo Z. Ghorbanimoghaddam L. Giambastiani F. I. Giasemis V. Gibson H. K. Giemza A. L. Gilman M. Giovannetti A. Gioventù L. Girardey P. Gironella Gironell C. Giugliano M. A. Giza E. L. Gkougkousis F. C. Glaser V. V. Gligorov C. Göbel E. Golobardes D. Golubkov A. Golutvin A. Gomes S. Gomez Fernandez F. Goncalves Abrantes M. Goncerz G. Gong J. A. Gooding I. V. Gorelov C. Gotti J. P. Grabowski L. A. Granado Cardoso E. Graugés E. Graverini L. Grazette G. Graziani A. T. Grecu L. M. Greeven N. A. Grieser L. Grillo S. Gromov C. Gu M. Guarise L. Guerry M. Guittiere V. Guliaeva P. A. Günther A.-K. Guseinov E. Gushchin Y. Guz T. Gys K. Habermann T. Hadavizadeh C. Hadjivasiliou G. Haefeli C. Haen J. Haimberger M. Hajheidari G. Hallett M. M. Halvorsen P. M. Hamilton J. Hammerich Q. Han X. Han S. Hansmann-Menzemer L. Hao N. Harnew M. Hartmann S. Hashmi J. He F. Hemmer C. Henderson R. D. L. Henderson A. M. Hennequin K. Hennessy L. Henry J. Herd P. Herrero Gascon J. Heuel A. Hicheur G. Hijano Mendizabal D. Hill S. E. Hollitt J. Horswill R. Hou Y. Hou N. Howarth J. Hu J. Hu W. Hu X. Hu W. Huang W. Hulsbergen R. J. Hunter M. Hushchyn D. Hutchcroft M. Idzik D. Ilin P. Ilten A. Inglessi A. Iniukhin A. Ishteev K. Ivshin R. Jacobsson H. Jage S. J. Jaimes Elles S. Jakobsen E. Jans B. K. Jashal A. Jawahery V. Jevtic E. Jiang X. Jiang Y. Jiang Y. J. Jiang M. John A. John Rubesh Rajan D. Johnson C. R. Jones T. P. Jones S. Joshi B. Jost J. Juan Castella N. Jurik I. Juszczak D. Kaminaris S. Kandybei M. Kane Y. Kang C. Kar M. Karacson D. Karpenkov A. Kauniskangas J. W. Kautz M. K. Kazanecki F. Keizer M. Kenzie T. Ketel B. Khanji A. Kharisova S. Kholodenko G. Khreich T. Kirn V. S. Kirsebom O. Kitouni S. Klaver N. Kleijne K. Klimaszewski M. R. Kmiec S. Koliiev L. Kolk A. Konoplyannikov P. Kopciewicz P. Koppenburg M. Korolev I. Kostiuk O. Kot S. Kotriakhova A. Kozachuk P. Kravchenko L. Kravchuk M. Kreps P. Krokovny W. Krupa W. Krzemien O. Kshyvanskyi S. Kubis M. Kucharczyk V. Kudryavtsev E. Kulikova A. Kupsc B. K. Kutsenko D. Lacarrere P. Laguarta Gonzalez A. Lai A. Lampis D. Lancierini C. Landesa Gomez J. J. Lane R. Lane G. Lanfranchi C. Langenbruch J. Langer O. Lantwin T. Latham F. Lazzari C. Lazzeroni R. Le Gac H. Lee R. Lefèvre A. Leflat S. Legotin M. Lehuraux E. Lemos Cid O. Leroy T. Lesiak E. D. Lesser B. Leverington A. Li C. Li H. Li K. Li L. Li M. Li P. Li P.-R. Li Q. Li S. Li T. Li T. Li Y. Li Y. Li Z. Lian X. Liang S. Libralon C. Lin T. Lin R. Lindner V. Lisovskyi R. Litvinov F. L. Liu G. Liu K. Liu S. Liu W. Liu Y. Liu Y. Liu Y. L. Liu A. Lobo Salvia A. Loi J. Lomba Castro T. Long J. H. Lopes A. Lopez Huertas S. López Soliño Q. Lu C. Lucarelli D. Lucchesi M. Lucio Martinez V. Lukashenko Y. Luo A. Lupato E. Luppi K. Lynch X.-R. Lyu G. M. Ma R. Ma S. Maccolini F. Machefert F. Maciuc B. Mack I. Mackay L. M. Mackey L. R. Madhan Mohan M. J. Madurai A. Maevskiy D. Magdalinski D. Maisuzenko M. W. Majewski J. J. Malczewski S. Malde L. Malentacca A. Malinin T. Maltsev G. Manca G. Mancinelli C. Mancuso R. Manera Escalero D. Manuzzi D. Marangotto J. F. Marchand R. Marchevski U. Marconi E. Mariani S. Mariani C. Marin Benito J. Marks A. M. Marshall L. Martel G. Martelli G. Martellotti L. Martinazzoli M. Martinelli D. Martinez Santos F. Martinez Vidal A. Massafferri R. Matev A. Mathad V. Matiunin C. Matteuzzi K. R. Mattioli A. Mauri E. Maurice J. Mauricio P. Mayencourt J. Mazorra de Cos M. Mazurek M. McCann L. Mcconnell T. H. McGrath N. T. McHugh A. McNab R. McNulty B. Meadows G. Meier D. Melnychuk F. M. Meng M. Merk A. Merli L. Meyer Garcia D. Miao H. Miao M. Mikhasenko D. A. Milanes A. Minotti E. Minucci T. Miralles B. Mitreska D. S. Mitzel A. Modak R. A. Mohammed R. D. Moise S. Mokhnenko E. F. Molina Cardenas T. Mombächer M. Monk S. Monteil A. Morcillo Gomez G. Morello M. J. Morello M. P. Morgenthaler J. Moron A. B. Morris A. G. Morris R. Mountain H. Mu Z. M. Mu E. Muhammad F. Muheim M. Mulder K. Müller F. Muñoz-Rojas R. Murta P. Naik T. Nakada R. Nandakumar T. Nanut I. Nasteva M. Needham N. Neri S. Neubert N. Neufeld P. Neustroev J. Nicolini D. Nicotra E. M. Niel N. Nikitin P. Nogarolli P. Nogga C. Normand J. Novoa Fernandez G. Nowak C. Nunez H. N. Nur A. Oblakowska-Mucha V. Obraztsov T. Oeser S. Okamura A. Okhotnikov O. Okhrimenko R. Oldeman F. Oliva M. Olocco C. J. G. Onderwater R. H. O’Neil D. Osthues J. M. Otalora Goicochea P. Owen A. Oyanguren O. Ozcelik F. Paciolla A. Padee K. O. Padeken B. Pagare P. R. Pais T. Pajero A. Palano M. Palutan G. Panshin L. Paolucci A. Papanestis M. Pappagallo L. L. Pappalardo C. Pappenheimer C. Parkes B. Passalacqua G. Passaleva D. Passaro A. Pastore M. Patel J. Patoc C. Patrignani A. Paul C. J. Pawley A. Pellegrino J. Peng M. Pepe Altarelli S. Perazzini D. Pereima H. Pereira Da Costa A. Pereiro Castro P. Perret A. Perro K. Petridis A. Petrolini J. P. Pfaller H. Pham L. Pica M. Piccini L. Piccolo B. Pietrzyk G. Pietrzyk D. Pinci F. Pisani M. Pizzichemi V. Placinta M. Plo Casasus T. Poeschl F. Polci M. Poli Lener A. Poluektov N. Polukhina I. Polyakov E. Polycarpo S. Ponce D. Popov S. Poslavskii K. Prasanth C. Prouve D. Provenzano V. Pugatch G. Punzi S. Qasim Q. Q. Qian W. Qian N. Qin S. Qu R. Quagliani R. I. Rabadan Trejo J. H. Rademacker M. Rama M. Ramírez García V. Ramos De Oliveira M. Ramos Pernas M. S. Rangel F. Ratnikov G. Raven M. Rebollo De Miguel F. Redi J. Reich F. Reiss Z. Ren P. K. Resmi R. Ribatti G. R. Ricart D. Riccardi S. Ricciardi K. Richardson M. Richardson-Slipper K. Rinnert P. Robbe G. Robertson E. Rodrigues E. Rodriguez Fernandez J. A. Rodriguez Lopez E. Rodriguez Rodriguez J. Roensch A. Rogachev A. Rogovskiy D. L. Rolf P. Roloff V. Romanovskiy M. Romero Lamas A. Romero Vidal G. Romolini F. Ronchetti T. Rong M. Rotondo S. R. Roy M. S. Rudolph M. Ruiz Diaz R. A. Ruiz Fernandez J. Ruiz Vidal A. Ryzhikov J. Ryzka J. J. Saavedra-Arias J. J. Saborido Silva R. Sadek N. Sagidova D. Sahoo N. Sahoo B. Saitta M. Salomoni I. Sanderswood R. Santacesaria C. Santamarina Rios M. Santimaria L. Santoro E. Santovetti A. Saputi D. Saranin A. Sarnatskiy G. Sarpis M. Sarpis C. Satriano A. Satta M. Saur D. Savrina H. Sazak F. Sborzacchi L. G. Scantlebury Smead A. Scarabotto S. Schael S. Scherl M. Schiller H. Schindler M. Schmelling B. Schmidt S. Schmitt H. Schmitz O. Schneider A. Schopper N. Schulte S. Schulte M. H. Schune R. Schwemmer G. Schwering B. Sciascia A. Sciuccati S. Sellam A. Semennikov T. Senger M. Senghi Soares A. Sergi N. Serra L. Sestini A. Seuthe Y. Shang D. M. Shangase M. Shapkin R. S. Sharma I. Shchemerov L. Shchutska T. Shears L. Shekhtman Z. Shen S. Sheng V. Shevchenko B. Shi Q. Shi Y. Shimizu E. Shmanin R. Shorkin J. D. Shupperd R. Silva Coutinho G. Simi S. Simone N. Skidmore T. Skwarnicki M. W. Slater J. C. Smallwood E. Smith K. Smith M. Smith A. Snoch L. Soares Lavra M. D. Sokoloff F. J. P. Soler A. Solomin A. Solovev I. Solovyev R. Song Y. Song Y. Song Y. S. Song F. L. Souza De Almeida B. Souza De Paula E. Spadaro Norella E. Spedicato J. G. Speer E. Spiridenkov P. Spradlin V. Sriskaran F. Stagni M. Stahl S. Stahl S. Stanislaus E. N. Stein O. Steinkamp O. Stenyakin H. Stevens D. Strekalina Y. Su F. Suljik J. Sun L. Sun Y. Sun D. Sundfeld W. Sutcliffe P. N. Swallow K. Swientek F. Swystun A. Szabelski T. Szumlak Y. Tan M. D. Tat A. Terentev F. Terzuoli F. Teubert E. Thomas D. J. D. Thompson H. Tilquin V. Tisserand S. T’Jampens M. Tobin L. Tomassetti G. Tonani X. Tong D. Torres Machado L. Toscano D. Y. Tou C. Trippl G. Tuci N. Tuning L. H. Uecker A. Ukleja D. J. Unverzagt E. Ursov A. Usachov A. Ustyuzhanin U. Uwer V. Vagnoni V. Valcarce Cadenas G. Valenti N. Valls Canudas H. Van Hecke E. van Herwijnen C. B. Van Hulse R. Van Laak M. van Veghel G. Vasquez R. Vazquez Gomez P. Vazquez Regueiro C. Vázquez Sierra S. Vecchi J. J. Velthuis M. Veltri A. Venkateswaran M. Verdoglia M. Vesterinen D. Vico Benet P. Vidrier Villalba M. Vieites Diaz X. Vilasis-Cardona E. Vilella Figueras A. Villa P. Vincent F. C. Volle D. vom Bruch N. Voropaev K. Vos G. Vouters C. Vrahas J. Wagner J. Walsh E. J. Walton G. Wan C. Wang G. Wang J. Wang J. Wang J. Wang J. Wang M. Wang N. W. Wang R. Wang X. Wang X. Wang X. W. Wang Y. Wang Z. Wang Z. Wang Z. Wang J. A. Ward M. Waterlaat N. K. Watson D. Websdale Y. Wei J. Wendel B. D. C. Westhenry C. White M. Whitehead E. Whiter A. R. Wiederhold D. Wiedner G. Wilkinson M. K. Wilkinson M. Williams M. R. J. Williams R. Williams Z. Williams F. F. Wilson W. Wislicki M. Witek L. Witola G. Wormser S. A. Wotton H. Wu J. Wu Y. Wu Z. Wu K. Wyllie S. Xian Z. Xiang Y. Xie A. Xu J. Xu L. Xu L. Xu M. Xu Z. Xu Z. Xu Z. Xu D. Yang K. Yang S. Yang X. Yang Y. Yang Z. Yang Z. Yang V. Yeroshenko H. Yeung H. Yin X. Yin C. Y. Yu J. Yu X. Yuan Y Yuan E. Zaffaroni M. Zavertyaev M. Zdybal F. Zenesini C. Zeng M. Zeng C. Zhang D. Zhang J. Zhang L. Zhang S. Zhang S. Zhang Y. Zhang Y. Z. Zhang Y. Zhao A. Zharkova A. Zhelezov S. Z. Zheng X. Z. Zheng Y. Zheng T. Zhou X. Zhou Y. Zhou V. Zhovkovska L. Z. Zhu X. Zhu X. Zhu V. Zhukov J. Zhuo Q. Zou D. Zuliani G. Zunica Analysis of Λ b 0 $$ {\Lambda}_b^0 $$ → pK − μ + μ − decays Journal of High Energy Physics B Physics Flavour Changing Neutral Currents Flavour Physics Hadron-Hadron Scattering |
title | Analysis of Λ b 0 $$ {\Lambda}_b^0 $$ → pK − μ + μ − decays |
title_full | Analysis of Λ b 0 $$ {\Lambda}_b^0 $$ → pK − μ + μ − decays |
title_fullStr | Analysis of Λ b 0 $$ {\Lambda}_b^0 $$ → pK − μ + μ − decays |
title_full_unstemmed | Analysis of Λ b 0 $$ {\Lambda}_b^0 $$ → pK − μ + μ − decays |
title_short | Analysis of Λ b 0 $$ {\Lambda}_b^0 $$ → pK − μ + μ − decays |
title_sort | analysis of λ b 0 lambda b 0 pk μ μ decays |
topic | B Physics Flavour Changing Neutral Currents Flavour Physics Hadron-Hadron Scattering |
url | https://doi.org/10.1007/JHEP12(2024)147 |
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fferreirarodrigues analysisoflb0lambdab0pkmmdecays AT mferrillo analysisoflb0lambdab0pkmmdecays AT mferroluzzi analysisoflb0lambdab0pkmmdecays AT sfilippov analysisoflb0lambdab0pkmmdecays AT rafini analysisoflb0lambdab0pkmmdecays AT mfiorini analysisoflb0lambdab0pkmmdecays AT mfirlej analysisoflb0lambdab0pkmmdecays AT klfischer analysisoflb0lambdab0pkmmdecays AT dsfitzgerald analysisoflb0lambdab0pkmmdecays AT cfitzpatrick analysisoflb0lambdab0pkmmdecays AT tfiutowski analysisoflb0lambdab0pkmmdecays AT ffleuret analysisoflb0lambdab0pkmmdecays AT mfontana analysisoflb0lambdab0pkmmdecays AT lfforeman analysisoflb0lambdab0pkmmdecays AT rforty analysisoflb0lambdab0pkmmdecays AT dfouldsholt analysisoflb0lambdab0pkmmdecays AT vfrancolima analysisoflb0lambdab0pkmmdecays AT mfrancosevilla analysisoflb0lambdab0pkmmdecays AT mfrank analysisoflb0lambdab0pkmmdecays AT efranzoso analysisoflb0lambdab0pkmmdecays AT gfrau analysisoflb0lambdab0pkmmdecays AT cfrei analysisoflb0lambdab0pkmmdecays AT dafriday analysisoflb0lambdab0pkmmdecays AT jfu analysisoflb0lambdab0pkmmdecays AT qfuhring analysisoflb0lambdab0pkmmdecays AT yfujii analysisoflb0lambdab0pkmmdecays AT tfulghesu analysisoflb0lambdab0pkmmdecays AT egabriel analysisoflb0lambdab0pkmmdecays AT ggalati analysisoflb0lambdab0pkmmdecays AT mdgalati analysisoflb0lambdab0pkmmdecays AT agallastorreira analysisoflb0lambdab0pkmmdecays AT dgalli analysisoflb0lambdab0pkmmdecays AT sgambetta analysisoflb0lambdab0pkmmdecays AT mgandelman analysisoflb0lambdab0pkmmdecays AT pgandini analysisoflb0lambdab0pkmmdecays AT bganie analysisoflb0lambdab0pkmmdecays AT hgao analysisoflb0lambdab0pkmmdecays AT rgao analysisoflb0lambdab0pkmmdecays AT tqgao analysisoflb0lambdab0pkmmdecays AT ygao analysisoflb0lambdab0pkmmdecays AT ygao analysisoflb0lambdab0pkmmdecays AT ygao analysisoflb0lambdab0pkmmdecays AT mgarau analysisoflb0lambdab0pkmmdecays AT lmgarciamartin analysisoflb0lambdab0pkmmdecays AT pgarciamoreno analysisoflb0lambdab0pkmmdecays AT jgarciapardinas analysisoflb0lambdab0pkmmdecays AT kggarg analysisoflb0lambdab0pkmmdecays AT lgarrido analysisoflb0lambdab0pkmmdecays AT cgaspar analysisoflb0lambdab0pkmmdecays AT regeertsema analysisoflb0lambdab0pkmmdecays AT llgerken analysisoflb0lambdab0pkmmdecays AT egersabeck analysisoflb0lambdab0pkmmdecays AT mgersabeck analysisoflb0lambdab0pkmmdecays AT tgershon analysisoflb0lambdab0pkmmdecays AT sghizzo analysisoflb0lambdab0pkmmdecays AT zghorbanimoghaddam analysisoflb0lambdab0pkmmdecays AT lgiambastiani analysisoflb0lambdab0pkmmdecays AT figiasemis analysisoflb0lambdab0pkmmdecays AT vgibson analysisoflb0lambdab0pkmmdecays AT hkgiemza analysisoflb0lambdab0pkmmdecays AT algilman analysisoflb0lambdab0pkmmdecays AT mgiovannetti analysisoflb0lambdab0pkmmdecays AT agioventu analysisoflb0lambdab0pkmmdecays AT lgirardey analysisoflb0lambdab0pkmmdecays AT pgironellagironell analysisoflb0lambdab0pkmmdecays AT cgiugliano analysisoflb0lambdab0pkmmdecays AT magiza analysisoflb0lambdab0pkmmdecays AT elgkougkousis analysisoflb0lambdab0pkmmdecays AT fcglaser analysisoflb0lambdab0pkmmdecays AT vvgligorov analysisoflb0lambdab0pkmmdecays AT cgobel analysisoflb0lambdab0pkmmdecays AT egolobardes analysisoflb0lambdab0pkmmdecays AT dgolubkov analysisoflb0lambdab0pkmmdecays AT agolutvin analysisoflb0lambdab0pkmmdecays AT agomes analysisoflb0lambdab0pkmmdecays AT sgomezfernandez analysisoflb0lambdab0pkmmdecays AT fgoncalvesabrantes analysisoflb0lambdab0pkmmdecays AT mgoncerz analysisoflb0lambdab0pkmmdecays AT ggong analysisoflb0lambdab0pkmmdecays AT jagooding analysisoflb0lambdab0pkmmdecays AT ivgorelov analysisoflb0lambdab0pkmmdecays AT cgotti analysisoflb0lambdab0pkmmdecays AT jpgrabowski analysisoflb0lambdab0pkmmdecays AT lagranadocardoso analysisoflb0lambdab0pkmmdecays AT egrauges analysisoflb0lambdab0pkmmdecays AT egraverini analysisoflb0lambdab0pkmmdecays AT lgrazette analysisoflb0lambdab0pkmmdecays AT ggraziani analysisoflb0lambdab0pkmmdecays AT atgrecu analysisoflb0lambdab0pkmmdecays AT lmgreeven analysisoflb0lambdab0pkmmdecays AT nagrieser analysisoflb0lambdab0pkmmdecays AT lgrillo analysisoflb0lambdab0pkmmdecays AT sgromov analysisoflb0lambdab0pkmmdecays AT cgu analysisoflb0lambdab0pkmmdecays AT mguarise analysisoflb0lambdab0pkmmdecays AT lguerry analysisoflb0lambdab0pkmmdecays AT mguittiere analysisoflb0lambdab0pkmmdecays AT vguliaeva analysisoflb0lambdab0pkmmdecays AT pagunther analysisoflb0lambdab0pkmmdecays AT akguseinov analysisoflb0lambdab0pkmmdecays AT egushchin analysisoflb0lambdab0pkmmdecays AT yguz analysisoflb0lambdab0pkmmdecays AT tgys analysisoflb0lambdab0pkmmdecays AT khabermann analysisoflb0lambdab0pkmmdecays AT thadavizadeh analysisoflb0lambdab0pkmmdecays AT chadjivasiliou analysisoflb0lambdab0pkmmdecays AT ghaefeli analysisoflb0lambdab0pkmmdecays AT chaen analysisoflb0lambdab0pkmmdecays AT jhaimberger analysisoflb0lambdab0pkmmdecays AT mhajheidari analysisoflb0lambdab0pkmmdecays AT ghallett analysisoflb0lambdab0pkmmdecays AT mmhalvorsen analysisoflb0lambdab0pkmmdecays AT pmhamilton analysisoflb0lambdab0pkmmdecays AT jhammerich analysisoflb0lambdab0pkmmdecays AT qhan analysisoflb0lambdab0pkmmdecays AT xhan analysisoflb0lambdab0pkmmdecays AT shansmannmenzemer analysisoflb0lambdab0pkmmdecays AT lhao analysisoflb0lambdab0pkmmdecays AT nharnew analysisoflb0lambdab0pkmmdecays AT mhartmann analysisoflb0lambdab0pkmmdecays AT shashmi analysisoflb0lambdab0pkmmdecays AT jhe analysisoflb0lambdab0pkmmdecays AT fhemmer analysisoflb0lambdab0pkmmdecays AT chenderson analysisoflb0lambdab0pkmmdecays AT rdlhenderson analysisoflb0lambdab0pkmmdecays AT amhennequin analysisoflb0lambdab0pkmmdecays AT khennessy analysisoflb0lambdab0pkmmdecays AT lhenry analysisoflb0lambdab0pkmmdecays AT jherd analysisoflb0lambdab0pkmmdecays AT pherrerogascon analysisoflb0lambdab0pkmmdecays AT jheuel analysisoflb0lambdab0pkmmdecays AT ahicheur analysisoflb0lambdab0pkmmdecays AT ghijanomendizabal analysisoflb0lambdab0pkmmdecays AT dhill analysisoflb0lambdab0pkmmdecays AT sehollitt analysisoflb0lambdab0pkmmdecays AT jhorswill analysisoflb0lambdab0pkmmdecays AT rhou analysisoflb0lambdab0pkmmdecays AT yhou analysisoflb0lambdab0pkmmdecays AT nhowarth analysisoflb0lambdab0pkmmdecays AT jhu analysisoflb0lambdab0pkmmdecays AT jhu analysisoflb0lambdab0pkmmdecays AT whu analysisoflb0lambdab0pkmmdecays AT xhu analysisoflb0lambdab0pkmmdecays AT whuang analysisoflb0lambdab0pkmmdecays AT whulsbergen analysisoflb0lambdab0pkmmdecays AT rjhunter analysisoflb0lambdab0pkmmdecays AT mhushchyn analysisoflb0lambdab0pkmmdecays AT dhutchcroft analysisoflb0lambdab0pkmmdecays AT midzik analysisoflb0lambdab0pkmmdecays AT dilin analysisoflb0lambdab0pkmmdecays AT pilten analysisoflb0lambdab0pkmmdecays AT ainglessi analysisoflb0lambdab0pkmmdecays AT ainiukhin analysisoflb0lambdab0pkmmdecays AT aishteev analysisoflb0lambdab0pkmmdecays AT kivshin analysisoflb0lambdab0pkmmdecays AT rjacobsson analysisoflb0lambdab0pkmmdecays AT hjage analysisoflb0lambdab0pkmmdecays AT sjjaimeselles analysisoflb0lambdab0pkmmdecays AT sjakobsen analysisoflb0lambdab0pkmmdecays AT ejans analysisoflb0lambdab0pkmmdecays AT bkjashal analysisoflb0lambdab0pkmmdecays AT ajawahery analysisoflb0lambdab0pkmmdecays AT vjevtic analysisoflb0lambdab0pkmmdecays AT ejiang analysisoflb0lambdab0pkmmdecays AT xjiang analysisoflb0lambdab0pkmmdecays AT yjiang analysisoflb0lambdab0pkmmdecays AT yjjiang analysisoflb0lambdab0pkmmdecays AT mjohn analysisoflb0lambdab0pkmmdecays AT ajohnrubeshrajan analysisoflb0lambdab0pkmmdecays AT djohnson analysisoflb0lambdab0pkmmdecays AT crjones analysisoflb0lambdab0pkmmdecays AT tpjones analysisoflb0lambdab0pkmmdecays AT sjoshi analysisoflb0lambdab0pkmmdecays AT bjost analysisoflb0lambdab0pkmmdecays AT jjuancastella analysisoflb0lambdab0pkmmdecays AT njurik analysisoflb0lambdab0pkmmdecays AT ijuszczak analysisoflb0lambdab0pkmmdecays AT dkaminaris analysisoflb0lambdab0pkmmdecays AT skandybei analysisoflb0lambdab0pkmmdecays AT mkane analysisoflb0lambdab0pkmmdecays AT ykang analysisoflb0lambdab0pkmmdecays AT ckar analysisoflb0lambdab0pkmmdecays AT mkaracson analysisoflb0lambdab0pkmmdecays AT dkarpenkov analysisoflb0lambdab0pkmmdecays AT akauniskangas analysisoflb0lambdab0pkmmdecays AT jwkautz analysisoflb0lambdab0pkmmdecays AT mkkazanecki analysisoflb0lambdab0pkmmdecays AT fkeizer analysisoflb0lambdab0pkmmdecays AT mkenzie analysisoflb0lambdab0pkmmdecays AT tketel analysisoflb0lambdab0pkmmdecays AT bkhanji analysisoflb0lambdab0pkmmdecays AT akharisova analysisoflb0lambdab0pkmmdecays AT skholodenko analysisoflb0lambdab0pkmmdecays AT gkhreich analysisoflb0lambdab0pkmmdecays AT tkirn analysisoflb0lambdab0pkmmdecays AT vskirsebom analysisoflb0lambdab0pkmmdecays AT okitouni analysisoflb0lambdab0pkmmdecays AT sklaver analysisoflb0lambdab0pkmmdecays AT nkleijne analysisoflb0lambdab0pkmmdecays AT kklimaszewski analysisoflb0lambdab0pkmmdecays AT mrkmiec analysisoflb0lambdab0pkmmdecays AT skoliiev analysisoflb0lambdab0pkmmdecays AT lkolk analysisoflb0lambdab0pkmmdecays AT akonoplyannikov analysisoflb0lambdab0pkmmdecays AT pkopciewicz analysisoflb0lambdab0pkmmdecays AT pkoppenburg analysisoflb0lambdab0pkmmdecays AT mkorolev analysisoflb0lambdab0pkmmdecays AT ikostiuk analysisoflb0lambdab0pkmmdecays AT okot analysisoflb0lambdab0pkmmdecays AT skotriakhova analysisoflb0lambdab0pkmmdecays AT akozachuk analysisoflb0lambdab0pkmmdecays AT pkravchenko analysisoflb0lambdab0pkmmdecays AT lkravchuk analysisoflb0lambdab0pkmmdecays AT mkreps analysisoflb0lambdab0pkmmdecays AT pkrokovny analysisoflb0lambdab0pkmmdecays AT wkrupa analysisoflb0lambdab0pkmmdecays AT wkrzemien analysisoflb0lambdab0pkmmdecays AT okshyvanskyi analysisoflb0lambdab0pkmmdecays AT skubis analysisoflb0lambdab0pkmmdecays AT mkucharczyk analysisoflb0lambdab0pkmmdecays AT vkudryavtsev analysisoflb0lambdab0pkmmdecays AT ekulikova analysisoflb0lambdab0pkmmdecays AT akupsc analysisoflb0lambdab0pkmmdecays AT bkkutsenko analysisoflb0lambdab0pkmmdecays AT dlacarrere analysisoflb0lambdab0pkmmdecays AT plaguartagonzalez analysisoflb0lambdab0pkmmdecays AT alai analysisoflb0lambdab0pkmmdecays AT alampis analysisoflb0lambdab0pkmmdecays AT dlancierini analysisoflb0lambdab0pkmmdecays AT clandesagomez analysisoflb0lambdab0pkmmdecays AT jjlane analysisoflb0lambdab0pkmmdecays AT rlane analysisoflb0lambdab0pkmmdecays AT glanfranchi analysisoflb0lambdab0pkmmdecays AT clangenbruch analysisoflb0lambdab0pkmmdecays AT jlanger analysisoflb0lambdab0pkmmdecays AT olantwin analysisoflb0lambdab0pkmmdecays AT tlatham analysisoflb0lambdab0pkmmdecays AT flazzari analysisoflb0lambdab0pkmmdecays AT clazzeroni analysisoflb0lambdab0pkmmdecays AT rlegac analysisoflb0lambdab0pkmmdecays AT hlee analysisoflb0lambdab0pkmmdecays AT rlefevre analysisoflb0lambdab0pkmmdecays AT aleflat analysisoflb0lambdab0pkmmdecays AT slegotin analysisoflb0lambdab0pkmmdecays AT mlehuraux analysisoflb0lambdab0pkmmdecays AT elemoscid analysisoflb0lambdab0pkmmdecays AT oleroy analysisoflb0lambdab0pkmmdecays AT tlesiak analysisoflb0lambdab0pkmmdecays AT edlesser analysisoflb0lambdab0pkmmdecays AT bleverington analysisoflb0lambdab0pkmmdecays AT ali analysisoflb0lambdab0pkmmdecays AT cli analysisoflb0lambdab0pkmmdecays AT hli analysisoflb0lambdab0pkmmdecays AT kli analysisoflb0lambdab0pkmmdecays AT lli analysisoflb0lambdab0pkmmdecays AT mli analysisoflb0lambdab0pkmmdecays AT pli analysisoflb0lambdab0pkmmdecays AT prli analysisoflb0lambdab0pkmmdecays AT qli analysisoflb0lambdab0pkmmdecays AT sli analysisoflb0lambdab0pkmmdecays AT tli analysisoflb0lambdab0pkmmdecays AT tli analysisoflb0lambdab0pkmmdecays AT yli analysisoflb0lambdab0pkmmdecays AT yli analysisoflb0lambdab0pkmmdecays AT zlian analysisoflb0lambdab0pkmmdecays AT xliang analysisoflb0lambdab0pkmmdecays AT slibralon analysisoflb0lambdab0pkmmdecays AT clin analysisoflb0lambdab0pkmmdecays AT tlin analysisoflb0lambdab0pkmmdecays AT rlindner analysisoflb0lambdab0pkmmdecays AT vlisovskyi analysisoflb0lambdab0pkmmdecays AT rlitvinov analysisoflb0lambdab0pkmmdecays AT flliu analysisoflb0lambdab0pkmmdecays AT gliu analysisoflb0lambdab0pkmmdecays AT kliu analysisoflb0lambdab0pkmmdecays AT sliu analysisoflb0lambdab0pkmmdecays AT wliu analysisoflb0lambdab0pkmmdecays AT yliu analysisoflb0lambdab0pkmmdecays AT yliu analysisoflb0lambdab0pkmmdecays AT ylliu analysisoflb0lambdab0pkmmdecays AT alobosalvia analysisoflb0lambdab0pkmmdecays AT aloi analysisoflb0lambdab0pkmmdecays AT jlombacastro analysisoflb0lambdab0pkmmdecays AT tlong analysisoflb0lambdab0pkmmdecays AT jhlopes analysisoflb0lambdab0pkmmdecays AT alopezhuertas analysisoflb0lambdab0pkmmdecays AT slopezsolino analysisoflb0lambdab0pkmmdecays AT qlu analysisoflb0lambdab0pkmmdecays AT clucarelli analysisoflb0lambdab0pkmmdecays AT dlucchesi analysisoflb0lambdab0pkmmdecays AT mluciomartinez analysisoflb0lambdab0pkmmdecays AT vlukashenko analysisoflb0lambdab0pkmmdecays AT yluo analysisoflb0lambdab0pkmmdecays AT alupato analysisoflb0lambdab0pkmmdecays AT eluppi analysisoflb0lambdab0pkmmdecays AT klynch analysisoflb0lambdab0pkmmdecays AT xrlyu analysisoflb0lambdab0pkmmdecays AT gmma analysisoflb0lambdab0pkmmdecays AT rma analysisoflb0lambdab0pkmmdecays AT smaccolini analysisoflb0lambdab0pkmmdecays AT fmachefert analysisoflb0lambdab0pkmmdecays AT fmaciuc analysisoflb0lambdab0pkmmdecays AT bmack analysisoflb0lambdab0pkmmdecays AT imackay analysisoflb0lambdab0pkmmdecays AT lmmackey analysisoflb0lambdab0pkmmdecays AT lrmadhanmohan analysisoflb0lambdab0pkmmdecays AT mjmadurai analysisoflb0lambdab0pkmmdecays AT amaevskiy analysisoflb0lambdab0pkmmdecays AT dmagdalinski analysisoflb0lambdab0pkmmdecays AT dmaisuzenko analysisoflb0lambdab0pkmmdecays AT mwmajewski analysisoflb0lambdab0pkmmdecays AT jjmalczewski analysisoflb0lambdab0pkmmdecays AT smalde analysisoflb0lambdab0pkmmdecays AT lmalentacca analysisoflb0lambdab0pkmmdecays AT amalinin analysisoflb0lambdab0pkmmdecays AT tmaltsev analysisoflb0lambdab0pkmmdecays AT gmanca analysisoflb0lambdab0pkmmdecays AT gmancinelli analysisoflb0lambdab0pkmmdecays AT cmancuso analysisoflb0lambdab0pkmmdecays AT rmaneraescalero analysisoflb0lambdab0pkmmdecays AT dmanuzzi analysisoflb0lambdab0pkmmdecays AT dmarangotto analysisoflb0lambdab0pkmmdecays AT jfmarchand analysisoflb0lambdab0pkmmdecays AT rmarchevski analysisoflb0lambdab0pkmmdecays AT umarconi analysisoflb0lambdab0pkmmdecays AT emariani analysisoflb0lambdab0pkmmdecays AT smariani analysisoflb0lambdab0pkmmdecays AT cmarinbenito analysisoflb0lambdab0pkmmdecays AT jmarks analysisoflb0lambdab0pkmmdecays AT ammarshall analysisoflb0lambdab0pkmmdecays AT lmartel analysisoflb0lambdab0pkmmdecays AT gmartelli analysisoflb0lambdab0pkmmdecays AT gmartellotti analysisoflb0lambdab0pkmmdecays AT lmartinazzoli analysisoflb0lambdab0pkmmdecays AT mmartinelli analysisoflb0lambdab0pkmmdecays AT dmartinezsantos analysisoflb0lambdab0pkmmdecays AT fmartinezvidal analysisoflb0lambdab0pkmmdecays AT amassafferri analysisoflb0lambdab0pkmmdecays AT rmatev analysisoflb0lambdab0pkmmdecays AT amathad analysisoflb0lambdab0pkmmdecays AT vmatiunin analysisoflb0lambdab0pkmmdecays AT cmatteuzzi analysisoflb0lambdab0pkmmdecays AT krmattioli analysisoflb0lambdab0pkmmdecays AT amauri analysisoflb0lambdab0pkmmdecays AT emaurice analysisoflb0lambdab0pkmmdecays AT jmauricio analysisoflb0lambdab0pkmmdecays AT pmayencourt analysisoflb0lambdab0pkmmdecays AT jmazorradecos analysisoflb0lambdab0pkmmdecays AT mmazurek analysisoflb0lambdab0pkmmdecays AT mmccann analysisoflb0lambdab0pkmmdecays AT lmcconnell analysisoflb0lambdab0pkmmdecays AT thmcgrath analysisoflb0lambdab0pkmmdecays AT ntmchugh analysisoflb0lambdab0pkmmdecays AT amcnab analysisoflb0lambdab0pkmmdecays AT rmcnulty analysisoflb0lambdab0pkmmdecays AT bmeadows analysisoflb0lambdab0pkmmdecays AT gmeier analysisoflb0lambdab0pkmmdecays AT dmelnychuk analysisoflb0lambdab0pkmmdecays AT fmmeng analysisoflb0lambdab0pkmmdecays AT mmerk analysisoflb0lambdab0pkmmdecays AT amerli analysisoflb0lambdab0pkmmdecays AT lmeyergarcia analysisoflb0lambdab0pkmmdecays AT dmiao analysisoflb0lambdab0pkmmdecays AT hmiao analysisoflb0lambdab0pkmmdecays AT mmikhasenko analysisoflb0lambdab0pkmmdecays AT damilanes analysisoflb0lambdab0pkmmdecays AT aminotti analysisoflb0lambdab0pkmmdecays AT eminucci analysisoflb0lambdab0pkmmdecays AT tmiralles analysisoflb0lambdab0pkmmdecays AT bmitreska analysisoflb0lambdab0pkmmdecays AT dsmitzel analysisoflb0lambdab0pkmmdecays AT amodak analysisoflb0lambdab0pkmmdecays AT ramohammed analysisoflb0lambdab0pkmmdecays AT rdmoise analysisoflb0lambdab0pkmmdecays AT smokhnenko analysisoflb0lambdab0pkmmdecays AT efmolinacardenas analysisoflb0lambdab0pkmmdecays AT tmombacher analysisoflb0lambdab0pkmmdecays AT mmonk analysisoflb0lambdab0pkmmdecays AT smonteil analysisoflb0lambdab0pkmmdecays AT amorcillogomez analysisoflb0lambdab0pkmmdecays AT gmorello analysisoflb0lambdab0pkmmdecays AT mjmorello analysisoflb0lambdab0pkmmdecays AT mpmorgenthaler analysisoflb0lambdab0pkmmdecays AT jmoron analysisoflb0lambdab0pkmmdecays AT abmorris analysisoflb0lambdab0pkmmdecays AT agmorris analysisoflb0lambdab0pkmmdecays AT rmountain analysisoflb0lambdab0pkmmdecays AT hmu analysisoflb0lambdab0pkmmdecays AT zmmu analysisoflb0lambdab0pkmmdecays AT emuhammad analysisoflb0lambdab0pkmmdecays AT fmuheim analysisoflb0lambdab0pkmmdecays AT mmulder analysisoflb0lambdab0pkmmdecays AT kmuller analysisoflb0lambdab0pkmmdecays AT fmunozrojas analysisoflb0lambdab0pkmmdecays AT rmurta analysisoflb0lambdab0pkmmdecays AT pnaik analysisoflb0lambdab0pkmmdecays AT tnakada analysisoflb0lambdab0pkmmdecays AT rnandakumar analysisoflb0lambdab0pkmmdecays AT tnanut analysisoflb0lambdab0pkmmdecays AT inasteva analysisoflb0lambdab0pkmmdecays AT mneedham analysisoflb0lambdab0pkmmdecays AT nneri analysisoflb0lambdab0pkmmdecays AT sneubert analysisoflb0lambdab0pkmmdecays AT nneufeld analysisoflb0lambdab0pkmmdecays AT pneustroev analysisoflb0lambdab0pkmmdecays AT jnicolini analysisoflb0lambdab0pkmmdecays AT dnicotra analysisoflb0lambdab0pkmmdecays AT emniel analysisoflb0lambdab0pkmmdecays AT nnikitin analysisoflb0lambdab0pkmmdecays AT pnogarolli analysisoflb0lambdab0pkmmdecays AT pnogga analysisoflb0lambdab0pkmmdecays AT cnormand analysisoflb0lambdab0pkmmdecays AT jnovoafernandez analysisoflb0lambdab0pkmmdecays AT gnowak analysisoflb0lambdab0pkmmdecays AT cnunez analysisoflb0lambdab0pkmmdecays AT hnnur analysisoflb0lambdab0pkmmdecays AT aoblakowskamucha analysisoflb0lambdab0pkmmdecays AT vobraztsov analysisoflb0lambdab0pkmmdecays AT toeser analysisoflb0lambdab0pkmmdecays AT sokamura analysisoflb0lambdab0pkmmdecays AT aokhotnikov analysisoflb0lambdab0pkmmdecays AT ookhrimenko analysisoflb0lambdab0pkmmdecays AT roldeman analysisoflb0lambdab0pkmmdecays AT foliva analysisoflb0lambdab0pkmmdecays AT molocco analysisoflb0lambdab0pkmmdecays AT cjgonderwater analysisoflb0lambdab0pkmmdecays AT rhoneil analysisoflb0lambdab0pkmmdecays AT dosthues analysisoflb0lambdab0pkmmdecays AT jmotaloragoicochea analysisoflb0lambdab0pkmmdecays AT powen analysisoflb0lambdab0pkmmdecays AT aoyanguren analysisoflb0lambdab0pkmmdecays AT oozcelik analysisoflb0lambdab0pkmmdecays AT fpaciolla analysisoflb0lambdab0pkmmdecays AT apadee analysisoflb0lambdab0pkmmdecays AT kopadeken analysisoflb0lambdab0pkmmdecays AT bpagare analysisoflb0lambdab0pkmmdecays AT prpais analysisoflb0lambdab0pkmmdecays AT tpajero analysisoflb0lambdab0pkmmdecays AT apalano analysisoflb0lambdab0pkmmdecays AT mpalutan analysisoflb0lambdab0pkmmdecays AT gpanshin analysisoflb0lambdab0pkmmdecays AT lpaolucci analysisoflb0lambdab0pkmmdecays AT apapanestis analysisoflb0lambdab0pkmmdecays AT mpappagallo analysisoflb0lambdab0pkmmdecays AT llpappalardo analysisoflb0lambdab0pkmmdecays AT cpappenheimer analysisoflb0lambdab0pkmmdecays AT cparkes analysisoflb0lambdab0pkmmdecays AT bpassalacqua analysisoflb0lambdab0pkmmdecays AT gpassaleva analysisoflb0lambdab0pkmmdecays AT dpassaro analysisoflb0lambdab0pkmmdecays AT apastore analysisoflb0lambdab0pkmmdecays AT mpatel analysisoflb0lambdab0pkmmdecays AT jpatoc analysisoflb0lambdab0pkmmdecays AT cpatrignani analysisoflb0lambdab0pkmmdecays AT apaul analysisoflb0lambdab0pkmmdecays AT cjpawley analysisoflb0lambdab0pkmmdecays AT apellegrino analysisoflb0lambdab0pkmmdecays AT jpeng analysisoflb0lambdab0pkmmdecays AT mpepealtarelli analysisoflb0lambdab0pkmmdecays AT sperazzini analysisoflb0lambdab0pkmmdecays AT dpereima analysisoflb0lambdab0pkmmdecays AT hpereiradacosta analysisoflb0lambdab0pkmmdecays AT apereirocastro analysisoflb0lambdab0pkmmdecays AT pperret analysisoflb0lambdab0pkmmdecays AT aperro analysisoflb0lambdab0pkmmdecays AT kpetridis analysisoflb0lambdab0pkmmdecays AT apetrolini analysisoflb0lambdab0pkmmdecays AT jppfaller analysisoflb0lambdab0pkmmdecays AT hpham analysisoflb0lambdab0pkmmdecays AT lpica analysisoflb0lambdab0pkmmdecays AT mpiccini analysisoflb0lambdab0pkmmdecays AT lpiccolo analysisoflb0lambdab0pkmmdecays AT bpietrzyk analysisoflb0lambdab0pkmmdecays AT gpietrzyk analysisoflb0lambdab0pkmmdecays AT dpinci analysisoflb0lambdab0pkmmdecays AT fpisani analysisoflb0lambdab0pkmmdecays AT mpizzichemi analysisoflb0lambdab0pkmmdecays AT vplacinta analysisoflb0lambdab0pkmmdecays AT mplocasasus analysisoflb0lambdab0pkmmdecays AT tpoeschl analysisoflb0lambdab0pkmmdecays AT fpolci analysisoflb0lambdab0pkmmdecays AT mpolilener analysisoflb0lambdab0pkmmdecays AT apoluektov analysisoflb0lambdab0pkmmdecays AT npolukhina analysisoflb0lambdab0pkmmdecays AT ipolyakov analysisoflb0lambdab0pkmmdecays AT epolycarpo analysisoflb0lambdab0pkmmdecays AT sponce analysisoflb0lambdab0pkmmdecays AT dpopov analysisoflb0lambdab0pkmmdecays AT sposlavskii analysisoflb0lambdab0pkmmdecays AT kprasanth analysisoflb0lambdab0pkmmdecays AT cprouve analysisoflb0lambdab0pkmmdecays AT dprovenzano analysisoflb0lambdab0pkmmdecays AT vpugatch analysisoflb0lambdab0pkmmdecays AT gpunzi analysisoflb0lambdab0pkmmdecays AT sqasim analysisoflb0lambdab0pkmmdecays AT qqqian analysisoflb0lambdab0pkmmdecays AT wqian analysisoflb0lambdab0pkmmdecays AT nqin analysisoflb0lambdab0pkmmdecays AT squ analysisoflb0lambdab0pkmmdecays AT rquagliani analysisoflb0lambdab0pkmmdecays AT rirabadantrejo analysisoflb0lambdab0pkmmdecays AT jhrademacker analysisoflb0lambdab0pkmmdecays AT mrama analysisoflb0lambdab0pkmmdecays AT mramirezgarcia analysisoflb0lambdab0pkmmdecays AT vramosdeoliveira analysisoflb0lambdab0pkmmdecays AT mramospernas analysisoflb0lambdab0pkmmdecays AT msrangel analysisoflb0lambdab0pkmmdecays AT fratnikov analysisoflb0lambdab0pkmmdecays AT graven analysisoflb0lambdab0pkmmdecays AT mrebollodemiguel analysisoflb0lambdab0pkmmdecays AT fredi analysisoflb0lambdab0pkmmdecays AT jreich analysisoflb0lambdab0pkmmdecays AT freiss analysisoflb0lambdab0pkmmdecays AT zren analysisoflb0lambdab0pkmmdecays AT pkresmi analysisoflb0lambdab0pkmmdecays AT rribatti analysisoflb0lambdab0pkmmdecays AT grricart analysisoflb0lambdab0pkmmdecays AT driccardi analysisoflb0lambdab0pkmmdecays AT sricciardi analysisoflb0lambdab0pkmmdecays AT krichardson analysisoflb0lambdab0pkmmdecays AT mrichardsonslipper analysisoflb0lambdab0pkmmdecays AT krinnert analysisoflb0lambdab0pkmmdecays AT probbe analysisoflb0lambdab0pkmmdecays AT grobertson analysisoflb0lambdab0pkmmdecays AT erodrigues analysisoflb0lambdab0pkmmdecays AT erodriguezfernandez analysisoflb0lambdab0pkmmdecays AT jarodriguezlopez analysisoflb0lambdab0pkmmdecays AT erodriguezrodriguez analysisoflb0lambdab0pkmmdecays AT jroensch analysisoflb0lambdab0pkmmdecays AT arogachev analysisoflb0lambdab0pkmmdecays AT arogovskiy analysisoflb0lambdab0pkmmdecays AT dlrolf analysisoflb0lambdab0pkmmdecays AT proloff analysisoflb0lambdab0pkmmdecays AT vromanovskiy analysisoflb0lambdab0pkmmdecays AT mromerolamas analysisoflb0lambdab0pkmmdecays AT aromerovidal analysisoflb0lambdab0pkmmdecays AT gromolini analysisoflb0lambdab0pkmmdecays AT fronchetti analysisoflb0lambdab0pkmmdecays AT trong analysisoflb0lambdab0pkmmdecays AT mrotondo analysisoflb0lambdab0pkmmdecays AT srroy analysisoflb0lambdab0pkmmdecays AT msrudolph analysisoflb0lambdab0pkmmdecays AT mruizdiaz analysisoflb0lambdab0pkmmdecays AT raruizfernandez analysisoflb0lambdab0pkmmdecays AT jruizvidal analysisoflb0lambdab0pkmmdecays AT aryzhikov analysisoflb0lambdab0pkmmdecays AT jryzka analysisoflb0lambdab0pkmmdecays AT jjsaavedraarias analysisoflb0lambdab0pkmmdecays AT jjsaboridosilva analysisoflb0lambdab0pkmmdecays AT rsadek analysisoflb0lambdab0pkmmdecays AT nsagidova analysisoflb0lambdab0pkmmdecays AT dsahoo analysisoflb0lambdab0pkmmdecays AT nsahoo analysisoflb0lambdab0pkmmdecays AT bsaitta analysisoflb0lambdab0pkmmdecays AT msalomoni analysisoflb0lambdab0pkmmdecays AT isanderswood analysisoflb0lambdab0pkmmdecays AT rsantacesaria analysisoflb0lambdab0pkmmdecays AT csantamarinarios analysisoflb0lambdab0pkmmdecays AT msantimaria analysisoflb0lambdab0pkmmdecays AT lsantoro analysisoflb0lambdab0pkmmdecays AT esantovetti analysisoflb0lambdab0pkmmdecays AT asaputi analysisoflb0lambdab0pkmmdecays AT dsaranin analysisoflb0lambdab0pkmmdecays AT asarnatskiy analysisoflb0lambdab0pkmmdecays AT gsarpis analysisoflb0lambdab0pkmmdecays AT msarpis analysisoflb0lambdab0pkmmdecays AT csatriano analysisoflb0lambdab0pkmmdecays AT asatta analysisoflb0lambdab0pkmmdecays AT msaur analysisoflb0lambdab0pkmmdecays AT dsavrina analysisoflb0lambdab0pkmmdecays AT hsazak analysisoflb0lambdab0pkmmdecays AT fsborzacchi analysisoflb0lambdab0pkmmdecays AT lgscantleburysmead analysisoflb0lambdab0pkmmdecays AT ascarabotto analysisoflb0lambdab0pkmmdecays AT sschael analysisoflb0lambdab0pkmmdecays AT sscherl analysisoflb0lambdab0pkmmdecays AT mschiller analysisoflb0lambdab0pkmmdecays AT hschindler analysisoflb0lambdab0pkmmdecays AT mschmelling analysisoflb0lambdab0pkmmdecays AT bschmidt analysisoflb0lambdab0pkmmdecays AT sschmitt analysisoflb0lambdab0pkmmdecays AT hschmitz analysisoflb0lambdab0pkmmdecays AT oschneider analysisoflb0lambdab0pkmmdecays AT aschopper analysisoflb0lambdab0pkmmdecays AT nschulte analysisoflb0lambdab0pkmmdecays AT sschulte analysisoflb0lambdab0pkmmdecays AT mhschune analysisoflb0lambdab0pkmmdecays AT rschwemmer analysisoflb0lambdab0pkmmdecays AT gschwering analysisoflb0lambdab0pkmmdecays AT bsciascia analysisoflb0lambdab0pkmmdecays AT asciuccati analysisoflb0lambdab0pkmmdecays AT ssellam analysisoflb0lambdab0pkmmdecays AT asemennikov analysisoflb0lambdab0pkmmdecays AT tsenger analysisoflb0lambdab0pkmmdecays AT msenghisoares analysisoflb0lambdab0pkmmdecays AT asergi analysisoflb0lambdab0pkmmdecays AT nserra analysisoflb0lambdab0pkmmdecays AT lsestini analysisoflb0lambdab0pkmmdecays AT aseuthe analysisoflb0lambdab0pkmmdecays AT yshang analysisoflb0lambdab0pkmmdecays AT dmshangase analysisoflb0lambdab0pkmmdecays AT mshapkin analysisoflb0lambdab0pkmmdecays AT rssharma analysisoflb0lambdab0pkmmdecays AT ishchemerov analysisoflb0lambdab0pkmmdecays AT lshchutska analysisoflb0lambdab0pkmmdecays AT tshears analysisoflb0lambdab0pkmmdecays AT lshekhtman analysisoflb0lambdab0pkmmdecays AT zshen analysisoflb0lambdab0pkmmdecays AT ssheng analysisoflb0lambdab0pkmmdecays AT vshevchenko analysisoflb0lambdab0pkmmdecays AT bshi analysisoflb0lambdab0pkmmdecays AT qshi analysisoflb0lambdab0pkmmdecays AT yshimizu analysisoflb0lambdab0pkmmdecays AT eshmanin analysisoflb0lambdab0pkmmdecays AT rshorkin analysisoflb0lambdab0pkmmdecays AT jdshupperd analysisoflb0lambdab0pkmmdecays AT rsilvacoutinho analysisoflb0lambdab0pkmmdecays AT gsimi analysisoflb0lambdab0pkmmdecays AT ssimone analysisoflb0lambdab0pkmmdecays AT nskidmore analysisoflb0lambdab0pkmmdecays AT tskwarnicki analysisoflb0lambdab0pkmmdecays AT mwslater analysisoflb0lambdab0pkmmdecays AT jcsmallwood analysisoflb0lambdab0pkmmdecays AT esmith analysisoflb0lambdab0pkmmdecays AT ksmith analysisoflb0lambdab0pkmmdecays AT msmith analysisoflb0lambdab0pkmmdecays AT asnoch analysisoflb0lambdab0pkmmdecays AT lsoareslavra analysisoflb0lambdab0pkmmdecays AT mdsokoloff analysisoflb0lambdab0pkmmdecays AT fjpsoler analysisoflb0lambdab0pkmmdecays AT asolomin analysisoflb0lambdab0pkmmdecays AT asolovev analysisoflb0lambdab0pkmmdecays AT isolovyev analysisoflb0lambdab0pkmmdecays AT rsong analysisoflb0lambdab0pkmmdecays AT ysong analysisoflb0lambdab0pkmmdecays AT ysong analysisoflb0lambdab0pkmmdecays AT yssong analysisoflb0lambdab0pkmmdecays AT flsouzadealmeida analysisoflb0lambdab0pkmmdecays AT bsouzadepaula analysisoflb0lambdab0pkmmdecays AT espadaronorella analysisoflb0lambdab0pkmmdecays AT espedicato analysisoflb0lambdab0pkmmdecays AT jgspeer analysisoflb0lambdab0pkmmdecays AT espiridenkov analysisoflb0lambdab0pkmmdecays AT pspradlin analysisoflb0lambdab0pkmmdecays AT vsriskaran analysisoflb0lambdab0pkmmdecays AT fstagni analysisoflb0lambdab0pkmmdecays AT mstahl analysisoflb0lambdab0pkmmdecays AT sstahl analysisoflb0lambdab0pkmmdecays AT sstanislaus analysisoflb0lambdab0pkmmdecays AT enstein analysisoflb0lambdab0pkmmdecays AT osteinkamp analysisoflb0lambdab0pkmmdecays AT ostenyakin analysisoflb0lambdab0pkmmdecays AT hstevens analysisoflb0lambdab0pkmmdecays AT dstrekalina analysisoflb0lambdab0pkmmdecays AT ysu analysisoflb0lambdab0pkmmdecays AT fsuljik analysisoflb0lambdab0pkmmdecays AT jsun analysisoflb0lambdab0pkmmdecays AT lsun analysisoflb0lambdab0pkmmdecays AT ysun analysisoflb0lambdab0pkmmdecays AT dsundfeld analysisoflb0lambdab0pkmmdecays AT wsutcliffe analysisoflb0lambdab0pkmmdecays AT pnswallow analysisoflb0lambdab0pkmmdecays AT kswientek analysisoflb0lambdab0pkmmdecays AT fswystun analysisoflb0lambdab0pkmmdecays AT aszabelski analysisoflb0lambdab0pkmmdecays AT tszumlak analysisoflb0lambdab0pkmmdecays AT ytan analysisoflb0lambdab0pkmmdecays AT mdtat analysisoflb0lambdab0pkmmdecays AT aterentev analysisoflb0lambdab0pkmmdecays AT fterzuoli analysisoflb0lambdab0pkmmdecays AT fteubert analysisoflb0lambdab0pkmmdecays AT ethomas analysisoflb0lambdab0pkmmdecays AT djdthompson analysisoflb0lambdab0pkmmdecays AT htilquin analysisoflb0lambdab0pkmmdecays AT vtisserand analysisoflb0lambdab0pkmmdecays AT stjampens analysisoflb0lambdab0pkmmdecays AT mtobin analysisoflb0lambdab0pkmmdecays AT ltomassetti analysisoflb0lambdab0pkmmdecays AT gtonani analysisoflb0lambdab0pkmmdecays AT xtong analysisoflb0lambdab0pkmmdecays AT dtorresmachado analysisoflb0lambdab0pkmmdecays AT ltoscano analysisoflb0lambdab0pkmmdecays AT dytou analysisoflb0lambdab0pkmmdecays AT ctrippl analysisoflb0lambdab0pkmmdecays AT gtuci analysisoflb0lambdab0pkmmdecays AT ntuning analysisoflb0lambdab0pkmmdecays AT lhuecker analysisoflb0lambdab0pkmmdecays AT aukleja analysisoflb0lambdab0pkmmdecays AT djunverzagt analysisoflb0lambdab0pkmmdecays AT eursov analysisoflb0lambdab0pkmmdecays AT ausachov analysisoflb0lambdab0pkmmdecays AT austyuzhanin analysisoflb0lambdab0pkmmdecays AT uuwer analysisoflb0lambdab0pkmmdecays AT vvagnoni analysisoflb0lambdab0pkmmdecays AT vvalcarcecadenas analysisoflb0lambdab0pkmmdecays AT gvalenti analysisoflb0lambdab0pkmmdecays AT nvallscanudas analysisoflb0lambdab0pkmmdecays AT hvanhecke analysisoflb0lambdab0pkmmdecays AT evanherwijnen analysisoflb0lambdab0pkmmdecays AT cbvanhulse analysisoflb0lambdab0pkmmdecays AT rvanlaak analysisoflb0lambdab0pkmmdecays AT mvanveghel analysisoflb0lambdab0pkmmdecays AT gvasquez analysisoflb0lambdab0pkmmdecays AT rvazquezgomez analysisoflb0lambdab0pkmmdecays AT pvazquezregueiro analysisoflb0lambdab0pkmmdecays AT cvazquezsierra analysisoflb0lambdab0pkmmdecays AT svecchi analysisoflb0lambdab0pkmmdecays AT jjvelthuis analysisoflb0lambdab0pkmmdecays AT mveltri analysisoflb0lambdab0pkmmdecays AT avenkateswaran analysisoflb0lambdab0pkmmdecays AT mverdoglia analysisoflb0lambdab0pkmmdecays AT mvesterinen analysisoflb0lambdab0pkmmdecays AT dvicobenet analysisoflb0lambdab0pkmmdecays AT pvidriervillalba analysisoflb0lambdab0pkmmdecays AT mvieitesdiaz analysisoflb0lambdab0pkmmdecays AT xvilasiscardona analysisoflb0lambdab0pkmmdecays AT evilellafigueras analysisoflb0lambdab0pkmmdecays AT avilla analysisoflb0lambdab0pkmmdecays AT pvincent analysisoflb0lambdab0pkmmdecays AT fcvolle analysisoflb0lambdab0pkmmdecays AT dvombruch analysisoflb0lambdab0pkmmdecays AT nvoropaev analysisoflb0lambdab0pkmmdecays AT kvos analysisoflb0lambdab0pkmmdecays AT gvouters analysisoflb0lambdab0pkmmdecays AT cvrahas analysisoflb0lambdab0pkmmdecays AT jwagner analysisoflb0lambdab0pkmmdecays AT jwalsh analysisoflb0lambdab0pkmmdecays AT ejwalton analysisoflb0lambdab0pkmmdecays AT gwan analysisoflb0lambdab0pkmmdecays AT cwang analysisoflb0lambdab0pkmmdecays AT gwang analysisoflb0lambdab0pkmmdecays AT jwang 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analysisoflb0lambdab0pkmmdecays AT arwiederhold analysisoflb0lambdab0pkmmdecays AT dwiedner analysisoflb0lambdab0pkmmdecays AT gwilkinson analysisoflb0lambdab0pkmmdecays AT mkwilkinson analysisoflb0lambdab0pkmmdecays AT mwilliams analysisoflb0lambdab0pkmmdecays AT mrjwilliams analysisoflb0lambdab0pkmmdecays AT rwilliams analysisoflb0lambdab0pkmmdecays AT zwilliams analysisoflb0lambdab0pkmmdecays AT ffwilson analysisoflb0lambdab0pkmmdecays AT wwislicki analysisoflb0lambdab0pkmmdecays AT mwitek analysisoflb0lambdab0pkmmdecays AT lwitola analysisoflb0lambdab0pkmmdecays AT gwormser analysisoflb0lambdab0pkmmdecays AT sawotton analysisoflb0lambdab0pkmmdecays AT hwu analysisoflb0lambdab0pkmmdecays AT jwu analysisoflb0lambdab0pkmmdecays AT ywu analysisoflb0lambdab0pkmmdecays AT zwu analysisoflb0lambdab0pkmmdecays AT kwyllie analysisoflb0lambdab0pkmmdecays AT sxian analysisoflb0lambdab0pkmmdecays AT zxiang analysisoflb0lambdab0pkmmdecays AT yxie analysisoflb0lambdab0pkmmdecays AT axu analysisoflb0lambdab0pkmmdecays AT jxu analysisoflb0lambdab0pkmmdecays AT lxu analysisoflb0lambdab0pkmmdecays AT lxu analysisoflb0lambdab0pkmmdecays AT mxu analysisoflb0lambdab0pkmmdecays AT zxu analysisoflb0lambdab0pkmmdecays AT zxu analysisoflb0lambdab0pkmmdecays AT zxu analysisoflb0lambdab0pkmmdecays AT dyang analysisoflb0lambdab0pkmmdecays AT kyang analysisoflb0lambdab0pkmmdecays AT syang analysisoflb0lambdab0pkmmdecays AT xyang analysisoflb0lambdab0pkmmdecays AT yyang analysisoflb0lambdab0pkmmdecays AT zyang analysisoflb0lambdab0pkmmdecays AT zyang analysisoflb0lambdab0pkmmdecays AT vyeroshenko analysisoflb0lambdab0pkmmdecays AT hyeung analysisoflb0lambdab0pkmmdecays AT hyin analysisoflb0lambdab0pkmmdecays AT xyin analysisoflb0lambdab0pkmmdecays AT cyyu analysisoflb0lambdab0pkmmdecays AT jyu analysisoflb0lambdab0pkmmdecays AT xyuan analysisoflb0lambdab0pkmmdecays AT yyuan analysisoflb0lambdab0pkmmdecays AT ezaffaroni analysisoflb0lambdab0pkmmdecays AT mzavertyaev analysisoflb0lambdab0pkmmdecays AT mzdybal analysisoflb0lambdab0pkmmdecays AT fzenesini analysisoflb0lambdab0pkmmdecays AT czeng analysisoflb0lambdab0pkmmdecays AT mzeng analysisoflb0lambdab0pkmmdecays AT czhang analysisoflb0lambdab0pkmmdecays AT dzhang analysisoflb0lambdab0pkmmdecays AT jzhang analysisoflb0lambdab0pkmmdecays AT lzhang analysisoflb0lambdab0pkmmdecays AT szhang analysisoflb0lambdab0pkmmdecays AT szhang analysisoflb0lambdab0pkmmdecays AT yzhang analysisoflb0lambdab0pkmmdecays AT yzzhang analysisoflb0lambdab0pkmmdecays AT yzhao analysisoflb0lambdab0pkmmdecays AT azharkova analysisoflb0lambdab0pkmmdecays AT azhelezov analysisoflb0lambdab0pkmmdecays AT szzheng analysisoflb0lambdab0pkmmdecays AT xzzheng analysisoflb0lambdab0pkmmdecays AT yzheng analysisoflb0lambdab0pkmmdecays AT tzhou analysisoflb0lambdab0pkmmdecays AT xzhou analysisoflb0lambdab0pkmmdecays AT yzhou analysisoflb0lambdab0pkmmdecays AT vzhovkovska analysisoflb0lambdab0pkmmdecays AT lzzhu analysisoflb0lambdab0pkmmdecays AT xzhu analysisoflb0lambdab0pkmmdecays AT xzhu analysisoflb0lambdab0pkmmdecays AT vzhukov analysisoflb0lambdab0pkmmdecays AT jzhuo analysisoflb0lambdab0pkmmdecays AT qzou analysisoflb0lambdab0pkmmdecays AT dzuliani analysisoflb0lambdab0pkmmdecays AT gzunica analysisoflb0lambdab0pkmmdecays |