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实验演示偏振编码测量设备无关量子密钥分发。

Experimental demonstration of polarization encoding measurement-device-independent quantum key distribution.

机构信息

Centre for Quantum Information and Quantum Control, Department of Physics and Department of Electrical and Computer Engineering, University of Toronto, Toronto, Ontario, Canada M5S 3G4.

出版信息

Phys Rev Lett. 2014 May 16;112(19):190503. doi: 10.1103/PhysRevLett.112.190503. Epub 2014 May 14.

Abstract

We demonstrate the first implementation of polarization encoding measurement-device-independent quantum key distribution (MDI-QKD), which is immune to all detector side-channel attacks. Active phase randomization of each individual pulse is implemented to protect against attacks on imperfect sources. By optimizing the parameters in the decoy state protocol, we show that it is feasible to implement polarization encoding MDI-QKD with commercial off-the-shelf devices. A rigorous finite key analysis is applied to estimate the secure key rate. Our work paves the way for the realization of a MDI-QKD network, in which the users only need compact and low-cost state-preparation devices and can share complicated and expensive detectors provided by an untrusted network server.

摘要

我们展示了偏振编码测量设备无关量子密钥分发(MDI-QKD)的首次实现,该技术对所有探测器侧信道攻击免疫。通过对每个脉冲的相位进行主动随机化,我们实现了对非完美光源攻击的保护。通过对诱骗态协议中的参数进行优化,我们证明了使用商用现货设备实现偏振编码 MDI-QKD 是可行的。我们采用严格的有限密钥分析来评估安全密钥率。我们的工作为实现 MDI-QKD 网络铺平了道路,在该网络中,用户只需要紧凑且低成本的状态制备设备,并可以共享由不可信网络服务器提供的复杂且昂贵的探测器。

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