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连续高速相干单向量子密钥分发。

Continuous high speed coherent one-way quantum key distribution.

作者信息

Stucki Damien, Barreiro Claudio, Fasel Sylvain, Gautier Jean-Daniel, Gay Olivier, Gisin Nicolas, Thew Rob, Thoma Yann, Trinkler Patrick, Vannel Fabien, Zbinden Hugo

机构信息

Group of Applied Physics, University of Geneva, 1211, Geneva 4, Switzerland.

出版信息

Opt Express. 2009 Aug 3;17(16):13326-34. doi: 10.1364/oe.17.013326.

Abstract

Quantum key distribution (QKD) is the first commercial quantum technology operating at the level of single quanta and is a leading light for quantum-enabled photonic technologies. However, controlling these quantum optical systems in real world environments presents significant challenges. For the first time, we have brought together three key concepts for future QKD systems: a simple high-speed protocol; high performance detection; and integration both, at the component level and for standard fibre network connectivity. The QKD system is capable of continuous and autonomous operation, generating secret keys in real time. Laboratory and field tests were performed and comparisons made with robust InGaAs avalanche photodiodes and superconducting detectors. We report the first real world implementation of a fully functional QKD system over a 43 dB-loss (150 km) transmission line in the Swisscom fibre optic network where we obtained average real-time distribution rates over 3 hours of 2.5 bps.

摘要

量子密钥分发(QKD)是首个在单量子水平上运行的商业量子技术,也是量子光子技术的引领者。然而,在现实环境中控制这些量子光学系统面临着重大挑战。我们首次将未来QKD系统的三个关键概念结合在一起:一个简单的高速协议;高性能探测;以及在组件层面和标准光纤网络连接方面的集成。该QKD系统能够连续自主运行,实时生成密钥。我们进行了实验室和现场测试,并与坚固的铟镓砷雪崩光电二极管和超导探测器进行了比较。我们报告了在瑞士电信光纤网络中一条43分贝损耗(150公里)传输线上首次实现的全功能QKD系统的实际应用,在那里我们在3小时内获得了平均2.5比特每秒的实时分发速率。

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