论文标题

具有缺陷和相关源的实验测量设备独立型量子键分布

Experimental measurement-device-independent type quantum key distribution with flawed and correlated sources

论文作者

Gu, Jie, Cao, Xiao-Yu, Fu, Yao, He, Zong-Wu, Yin, Ze-Jie, Yin, Hua-Lei, Chen, Zeng-Bing

论文摘要

量子密钥分布(QKD)的安全性受到现实设备和理论假设之间的差异的严重威胁。最近,提出了一个称为参考技术的重要框架,以在当前技术(例如状态准备缺陷,由模式依赖性,特洛伊木马atttacks和脉冲相关性引起的侧渠道)下为任意源缺陷提供安全性。在这里,我们采用参考技术来证明使用激光脉冲针对潜在的源缺陷的有效的四相测量设备独立QKD的安全性。我们提出了源缺陷的表征,并将其连接到实验,以及针对连贯攻击的有限键分析。此外,我们通过实验证明的实施实施证明了协议的可行性,并以20 dB的频道损失实现了253个基点的安全关键率。与以前具有不完美设备的QKD协议相比,我们的研究大大提高了安全的关键速率和传输距离,并显示了使用设备不完美的安全QKD实际部署的应用潜力。

The security of quantum key distribution (QKD) is severely threatened by discrepancies between realistic devices and theoretical assumptions. Recently, a significant framework called the reference technique was proposed to provide security against arbitrary source flaws under current technology such as state preparation flaws, side channels caused by mode dependencies, the Trojan horse atttacks and pulse correlations. Here, we adopt the reference technique to prove security of an efficient four-phase measurement-device-independent QKD using laser pulses against potential source imperfections. We present a characterization of source flaws and connect them to experiments, together with a finite-key analysis against coherent attacks. In addition, we demonstrate the feasibility of our protocol through a proof-of-principle experimental implementation and achieve a secure key rate of 253 bps with a 20 dB channel loss. Compared with previous QKD protocols with imperfect devices, our study considerably improves both the secure key rate and the transmission distance, and shows application potential in the practical deployment of secure QKD with device imperfections.

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