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Phase-Matching Quantum Key Distribution Without Intensity Modulation

delete2023-08-18
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OA
AI
S
Shan-Feng Shao
曹晓雨 (Xiaoyu Cao)
Y
Yuan-Mei Xie
J
Jie Gu
W
Wen‐Bo Liu
傅瑶 (Yao Fu) *
H
Hua‐Lei Yin
陈增兵 (Zeng‐Bing Chen)
DOI:10.1103/PhysRevApplied.20.024046delete
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Abstract

Abstract

En 中文
Quantum key distribution provides a promising solution for sharing secure keys between two distant parties with unconditional security. Nevertheless, quantum key distribution is still severely threatened by the imperfections of devices. In particular, the classical pulse correlation threatens security when sending decoy states. To address this problem and simplify experimental requirements, we propose a phase-matching quantum key distribution protocol without intensity modulation. Instead of using decoy states, we propose an alternative method to estimate the theoretical upper bound on the phase error rate contributed by even-photon-number components. Simulation results show that the transmission distance of our protocol could reach 305 km in telecommunication fiber. Furthermore, we perform a proof-of-principle experiment to demonstrate the feasibility of our protocol, and the key rate reaches 22.5 bit/s under a 45-dB channel loss. Addressing the security loophole of pulse intensity correlation and replacing continuous random phase with a six- or eight-slice random phase, our protocol provides a promising solution for constructing quantum networks.
Keywords:
CRYPTOGRAPHY
SECURITY
ROBUST

Journal

Physical Review Applied cover
Physical Review Applied
IF:
4.4
Papers:
7.1K
Citations:
2.8W

Organization

N
nanjing university
Scholars:
7.7W
Papers: 5.6W
Citations: 87
C
chinese academy of sciences
Scholars:
56.3W
Papers: 44.8W
Citations: 704