Efficient source-independent quantum conference key agreement

Fuente: arXiv
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Main Authors: Bao, Yu, Xiao, Yi-Ran, Song, Yu-Chen, Fu, Yao, Cao, Xiao-Yu, Yin, Hua-Lei, Chen, Zeng-Bing
Format: Preprint
Published: 2024
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author Bao, Yu
Xiao, Yi-Ran
Song, Yu-Chen
Fu, Yao
Cao, Xiao-Yu
Yin, Hua-Lei
Chen, Zeng-Bing
author_facet Bao, Yu
Xiao, Yi-Ran
Song, Yu-Chen
Fu, Yao
Cao, Xiao-Yu
Yin, Hua-Lei
Chen, Zeng-Bing
contents Quantum conference key agreement (QCKA) enables the unconditional secure distribution of conference keys among multiple participants. Due to challenges in high-fidelity preparation and long-distance distribution of multi-photon entanglement, entanglement-based QCKA is facing severe limitations in both key rate and scalability. Here, we propose a source-independent QCKA scheme utilizing the post-matching method, feasible within the entangled photon pair distribution network. We introduce an equivalent distributing virtual multi-photon entanglement protocol for providing the unconditional security proof even in the case of coherent attacks. For the symmetry star-network, comparing with previous $n$-photon entanglement protocol, the conference key rate is improved from $O(η^{n})$ to $O(η^{2})$, where $η$ is the transmittance from the entanglement source to one participant. Simulation results show that the performance of our protocol has multiple orders of magnitude advantages in the intercity distance. We anticipate that our approach will demonstrate its potential in the implementation of quantum networks.
format Preprint
id arxiv_https___arxiv_org_abs_2406_17267
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Efficient source-independent quantum conference key agreement
Bao, Yu
Xiao, Yi-Ran
Song, Yu-Chen
Fu, Yao
Cao, Xiao-Yu
Yin, Hua-Lei
Chen, Zeng-Bing
Quantum Physics
Quantum conference key agreement (QCKA) enables the unconditional secure distribution of conference keys among multiple participants. Due to challenges in high-fidelity preparation and long-distance distribution of multi-photon entanglement, entanglement-based QCKA is facing severe limitations in both key rate and scalability. Here, we propose a source-independent QCKA scheme utilizing the post-matching method, feasible within the entangled photon pair distribution network. We introduce an equivalent distributing virtual multi-photon entanglement protocol for providing the unconditional security proof even in the case of coherent attacks. For the symmetry star-network, comparing with previous $n$-photon entanglement protocol, the conference key rate is improved from $O(η^{n})$ to $O(η^{2})$, where $η$ is the transmittance from the entanglement source to one participant. Simulation results show that the performance of our protocol has multiple orders of magnitude advantages in the intercity distance. We anticipate that our approach will demonstrate its potential in the implementation of quantum networks.
title Efficient source-independent quantum conference key agreement
topic Quantum Physics
url https://arxiv.org/abs/2406.17267