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Detector-device-independent quantum key distribution: Security analysis and fast implementation

机译:与检测器设备无关的量子密钥分发:安全性分析和快速实现

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摘要

One of the most pressing issues in quantum key distribution (QKD) is the problem of detector side-channel attacks. To overcome this problem, researchers proposed an elegant “time-reversal” QKD protocol called measurement-device-independent QKD (MDI-QKD), which is based on time-reversed entanglement swapping. However, MDI-QKD is more challenging to implement than standard point-to-point QKD. Recently, an intermediary QKD protocol called detector-device-independent QKD (DDI-QKD) has been proposed to overcome the drawbacks of MDI-QKD, with the hope that it would eventually lead to a more efficient detector side-channel-free QKD system. Here, we analyze the security of DDI-QKD and elucidate its security assumptions. We find that DDI-QKD is not equivalent to MDI-QKD, but its security can be demonstrated with reasonable assumptions. On the more practical side, we consider the feasibility of DDI-QKD and present a fast experimental demonstration (clocked at 625 MHz), capable of secret key exchange up to more than 90 km.
机译:量子密钥分发(QKD)中最紧迫的问题之一是检测器侧通道攻击问题。为了克服这个问题,研究人员提出了一种优雅的“时间反转” QKD协议,称为与测量设备无关的QKD(MDI-QKD),它基于时间反转的纠缠交换。但是,与标准的点对点QKD相比,MDI-QKD的实施更具挑战性。最近,已经提出了一种称为检测器独立于设备的QKD(DDI-QKD)的中间QKD协议,以克服MDI-QKD的缺点,希望它最终将导致更高效的无检测器侧信道的QKD系统。在这里,我们分析DDI-QKD的安全性并阐明其安全性假设。我们发现DDI-QKD不等同于MDI-QKD,但是可以通过合理的假设来证明其安全性。在更实际的方面,我们考虑了DDI-QKD的可行性,并提出了一个快速的实验演示(时钟频率为625 MHz),能够进行长达90 km的密钥交换。

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