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Time-bin phase-encoding quantum key distribution using Sagnac-based optics and compatible electronics

delete2023-07-24
delete6
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OA
AI
Y
yan-lin tang
周纯 cover
周纯 (Chun Zhou)
D
Dongdong Li
Z
Zhi-Lin Xie
M
Mu-Lan Xu
J
Jian Sun
Z
Ze-Xu Zhang
J
Jiang Lianjun
L
Liwei Wang
G
Guoqing Liu
吴昆 (Kun Wu)
Y
Yan Ma
B
B. Zheng
M
Mu-Sheng Jiang
Y
Yang Wang
Y
Yu-Kang Zhao
Q
Qingli Ma
D
Dexiang Zhang
M
Meisheng Zhao
DOI:10.1364/OE.496723delete
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Abstract

Abstract

En 中文
In this work, we present a new time-bin phase-encoding quantum key distribution (QKD), where the transmitter utilizes an inherently stable Sagnac-type interferometer, and has comparable electrical requirements to existing polarization or phase encoding schemes. This approach does not require intensity calibration and is insensitive to environmental disturbances, making it both flexible and high-performing. We conducted experiments with a compact QKD system to demonstrate the stability and secure key rate performance of the presented scheme. The results show a typical secure key rate of 6.2 kbps@20 dB and 0.4 kbps@30 dB with channel loss emulated by variable optical attenuators. A continuous test of 120-km fiber spool shows a stable quantum bit error rate of the time-bin basis within 0.4%& SIM;0.6% over a consecutive 9-day period without any adjustment. This intrinsically stable and compatible scheme of time-bin phase encoding is extensively applicable in various QKD experiments, including BB84 and measurement-device-independent QKD.& COPY; 2023 Optica Publishing Group under the terms of the Optica Open Access Publishing Agreement
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Journal

Optics Express cover
Optics Express
IF:
3.3
Papers:
6.1W
Citations:
14.3W

Organization

P
pla information engineering university
Scholars:
2.8K
Papers: 1.6K
Citations: 2
A
anhui university
Scholars:
1.9W
Papers: 1.2W
Citations: 24