Photonic multipartite entanglement in discrete variables without arbitrary unitaries

We present an approach for designing sources of postselected multipartite states based on photon-pair sources. Our approach can be applied to arbitrary target states in different encoding schemes and physical platforms. It also allows one to limit the types of components to be used in the device, su...

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Main Authors: Milica Banić, J. E. Sipe, Marco Liscidini
Format: Article
Language:English
Published: American Physical Society 2025-01-01
Series:Physical Review Research
Online Access:http://doi.org/10.1103/PhysRevResearch.7.013060
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author Milica Banić
J. E. Sipe
Marco Liscidini
author_facet Milica Banić
J. E. Sipe
Marco Liscidini
author_sort Milica Banić
collection DOAJ
description We present an approach for designing sources of postselected multipartite states based on photon-pair sources. Our approach can be applied to arbitrary target states in different encoding schemes and physical platforms. It also allows one to limit the types of components to be used in the device, such that lossy or difficult-to-implement optical elements can be avoided. As an example, we apply this strategy to design a passive integrated source of frequency-bin-encoded high-dimensional GHZ states with a 10-kHz on-chip generation rate for picojoule pump pulses.
format Article
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institution Kabale University
issn 2643-1564
language English
publishDate 2025-01-01
publisher American Physical Society
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series Physical Review Research
spelling doaj-art-b206c93bc7a84a01829df4e80379fd2e2025-01-16T15:06:23ZengAmerican Physical SocietyPhysical Review Research2643-15642025-01-017101306010.1103/PhysRevResearch.7.013060Photonic multipartite entanglement in discrete variables without arbitrary unitariesMilica BanićJ. E. SipeMarco LiscidiniWe present an approach for designing sources of postselected multipartite states based on photon-pair sources. Our approach can be applied to arbitrary target states in different encoding schemes and physical platforms. It also allows one to limit the types of components to be used in the device, such that lossy or difficult-to-implement optical elements can be avoided. As an example, we apply this strategy to design a passive integrated source of frequency-bin-encoded high-dimensional GHZ states with a 10-kHz on-chip generation rate for picojoule pump pulses.http://doi.org/10.1103/PhysRevResearch.7.013060
spellingShingle Milica Banić
J. E. Sipe
Marco Liscidini
Photonic multipartite entanglement in discrete variables without arbitrary unitaries
Physical Review Research
title Photonic multipartite entanglement in discrete variables without arbitrary unitaries
title_full Photonic multipartite entanglement in discrete variables without arbitrary unitaries
title_fullStr Photonic multipartite entanglement in discrete variables without arbitrary unitaries
title_full_unstemmed Photonic multipartite entanglement in discrete variables without arbitrary unitaries
title_short Photonic multipartite entanglement in discrete variables without arbitrary unitaries
title_sort photonic multipartite entanglement in discrete variables without arbitrary unitaries
url http://doi.org/10.1103/PhysRevResearch.7.013060
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AT jesipe photonicmultipartiteentanglementindiscretevariableswithoutarbitraryunitaries
AT marcoliscidini photonicmultipartiteentanglementindiscretevariableswithoutarbitraryunitaries