Exploring type-I seesaw under S 3 modular symmetry

This work’s novelty lies in using the simplest group i.e. Γ(2) ≃ S 3 modular symmetry implemented on the canonical seesaw to explain neutrino phenomenology. Here, we construct and classify models based on the doublet and singlet representations of supermultiplets under S 3 discrete symmetry along wi...

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Main Authors: Behera Mitesh Kumar, Ittisamai Pawin, Pongkitivanichkul Chakrit, Uttayarat Patipan
Format: Article
Language:English
Published: EDP Sciences 2024-01-01
Series:EPJ Web of Conferences
Online Access:https://www.epj-conferences.org/articles/epjconf/pdf/2024/22/epjconf_fpcp2024_02010.pdf
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author Behera Mitesh Kumar
Ittisamai Pawin
Pongkitivanichkul Chakrit
Uttayarat Patipan
author_facet Behera Mitesh Kumar
Ittisamai Pawin
Pongkitivanichkul Chakrit
Uttayarat Patipan
author_sort Behera Mitesh Kumar
collection DOAJ
description This work’s novelty lies in using the simplest group i.e. Γ(2) ≃ S 3 modular symmetry implemented on the canonical seesaw to explain neutrino phenomenology. Here, we construct and classify models based on the doublet and singlet representations of supermultiplets under S 3 discrete symmetry along with their respective modular weights, allowing a mass matrix for the neutrino sector with minimal use of free parameters, namely models A, B, C, D. These modular symmetries become advantageous in avoiding the requirements of multiple flavon fields and the intricacies of vacuum alignments. In this way, we endeavor to clarify the effect and significance of modular S 3 symmetry, which is considered in explaining the neutrino phenomenology viable with the current observations. Additionally, we also shed some light on the neutrinoless double beta decay.
format Article
id doaj-art-abe6052b1b6f45c9a211e6291ac815e7
institution Kabale University
issn 2100-014X
language English
publishDate 2024-01-01
publisher EDP Sciences
record_format Article
series EPJ Web of Conferences
spelling doaj-art-abe6052b1b6f45c9a211e6291ac815e72024-11-21T11:29:03ZengEDP SciencesEPJ Web of Conferences2100-014X2024-01-013120201010.1051/epjconf/202431202010epjconf_fpcp2024_02010Exploring type-I seesaw under S 3 modular symmetryBehera Mitesh Kumar0Ittisamai Pawin1Pongkitivanichkul Chakrit2Uttayarat Patipan3Department of Physics, Faculty of Science, Chulalongkorn UniversityDepartment of Physics, Faculty of Science, Chulalongkorn UniversityKhon Kaen Particle Physics and Cosmology Theory Group (KKPaCT), Department of Physics, Faculty of Science, Khon Kaen UniversityDepartment of Physics, Srinakharinwirot UniversityThis work’s novelty lies in using the simplest group i.e. Γ(2) ≃ S 3 modular symmetry implemented on the canonical seesaw to explain neutrino phenomenology. Here, we construct and classify models based on the doublet and singlet representations of supermultiplets under S 3 discrete symmetry along with their respective modular weights, allowing a mass matrix for the neutrino sector with minimal use of free parameters, namely models A, B, C, D. These modular symmetries become advantageous in avoiding the requirements of multiple flavon fields and the intricacies of vacuum alignments. In this way, we endeavor to clarify the effect and significance of modular S 3 symmetry, which is considered in explaining the neutrino phenomenology viable with the current observations. Additionally, we also shed some light on the neutrinoless double beta decay.https://www.epj-conferences.org/articles/epjconf/pdf/2024/22/epjconf_fpcp2024_02010.pdf
spellingShingle Behera Mitesh Kumar
Ittisamai Pawin
Pongkitivanichkul Chakrit
Uttayarat Patipan
Exploring type-I seesaw under S 3 modular symmetry
EPJ Web of Conferences
title Exploring type-I seesaw under S 3 modular symmetry
title_full Exploring type-I seesaw under S 3 modular symmetry
title_fullStr Exploring type-I seesaw under S 3 modular symmetry
title_full_unstemmed Exploring type-I seesaw under S 3 modular symmetry
title_short Exploring type-I seesaw under S 3 modular symmetry
title_sort exploring type i seesaw under s 3 modular symmetry
url https://www.epj-conferences.org/articles/epjconf/pdf/2024/22/epjconf_fpcp2024_02010.pdf
work_keys_str_mv AT beheramiteshkumar exploringtypeiseesawunders3modularsymmetry
AT ittisamaipawin exploringtypeiseesawunders3modularsymmetry
AT pongkitivanichkulchakrit exploringtypeiseesawunders3modularsymmetry
AT uttayaratpatipan exploringtypeiseesawunders3modularsymmetry