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Cambridge quantum network

delete2019-11-21
delete170
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OA
AI
J
J. F. Dynes *
A
A. Wonfor
W
W. W. -S. Tam
A
A. W. Sharpe
R
Ririka Takahashi
M
Marco Lucamarini
A
Andrew Plews
Z
Zhiliang Yuan
A
A. R. Dixon
J
Ji Young Cho
Y
Yoshimichi Tanizawa
J
J.-P. Elbers
H
H. Greißer
I
I.H. White
A
A. J. Shields
DOI:10.1038/s41534-019-0221-4delete
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摘要

摘要

En 中文
Future-proofing current fibre networks with quantum key distribution (QKD) is an attractive approach to combat the ever growing breaches of data theft. To succeed, this approach must offer broadband transport of quantum keys, efficient quantum key delivery and seamless user interaction, all within the existing fibre network. However, quantum networks to date either require dark fibres and/or offer bit rates inadequate for serving a large number of users. Here we report a city wide high-speed metropolitan QKD network-the Cambridge quantum network-operating on fibres already populated with high-bandwidth data traffic. We implement a robust key delivery layer to demonstrate essential network operation, as well as enabling encryption of 100 Gigabit per second (Gbps) simultaneous data traffic with rapidly refreshed quantum keys. Network resilience against link disruption is supported by high-QKD link rates and network link redundancy. We reveal that such a metropolitan network can support tens of thousands of users with key rates in excess of 1 kilobit per second (kbps) per user. Our result hence demonstrates a clear path for implementing quantum security in metropolitan fibre networks.
Keyword:
KEY DISTRIBUTION
FIELD-TEST
SECURE
TRANSMISSION
SYSTEM
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期刊

npj Quantum Information 封面图
npj Quantum Information
IF:
8.3
论文数:
1.4K
被引数:
8.1K

机构

U
University of Cambridge
学者数:
7.7W
论文数: 7.1W
被引数: 13.7W
T
toshiba corporation
学者数:
1.6K
论文数: 1.0K
被引数: 0