Generalized Quantum Repeater Graph States

Fuente: arXiv
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Autori principali: Li, Bikun, Goodenough, Kenneth, Rozpędek, Filip, Jiang, Liang
Natura: Preprint
Pubblicazione: 2024
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author Li, Bikun
Goodenough, Kenneth
Rozpędek, Filip
Jiang, Liang
author_facet Li, Bikun
Goodenough, Kenneth
Rozpędek, Filip
Jiang, Liang
contents All-photonic quantum repeaters are essential for establishing long-range quantum entanglement. Within repeater nodes, reliably performing entanglement swapping is a key component of scalable quantum communication. To tackle the challenge of probabilistic Bell state measurement in linear optics, which often leads to information loss, various approaches have been proposed to ensure the loss tolerance of distributing a single ebit. We have generalized previous work regarding repeater graph states with elaborate connectivity, enabling the efficient establishment of exploitable ebits at a finite rate with high probability. We demonstrate that our new scheme significantly outperforms the previous work with much flexibility and discuss the generation overhead of such resource states. These findings offer new insights into the scalability and reliability of loss-tolerant quantum networks.
format Preprint
id arxiv_https___arxiv_org_abs_2407_01429
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Generalized Quantum Repeater Graph States
Li, Bikun
Goodenough, Kenneth
Rozpędek, Filip
Jiang, Liang
Quantum Physics
All-photonic quantum repeaters are essential for establishing long-range quantum entanglement. Within repeater nodes, reliably performing entanglement swapping is a key component of scalable quantum communication. To tackle the challenge of probabilistic Bell state measurement in linear optics, which often leads to information loss, various approaches have been proposed to ensure the loss tolerance of distributing a single ebit. We have generalized previous work regarding repeater graph states with elaborate connectivity, enabling the efficient establishment of exploitable ebits at a finite rate with high probability. We demonstrate that our new scheme significantly outperforms the previous work with much flexibility and discuss the generation overhead of such resource states. These findings offer new insights into the scalability and reliability of loss-tolerant quantum networks.
title Generalized Quantum Repeater Graph States
topic Quantum Physics
url https://arxiv.org/abs/2407.01429