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Quantum key distribution with hacking countermeasures and long term field trial

机译:带有破解对策的量子密钥分发和长期现场试验

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摘要

Quantum key distribution’s (QKD’s) central and unique claim is information theoretic security. However there is an increasing understanding that the security of a QKD system relies not only on theoretical security proofs, but also on how closely the physical system matches the theoretical models and prevents attacks due to discrepancies. These side channel or hacking attacks exploit physical devices which do not necessarily behave precisely as the theory expects. As such there is a need for QKD systems to be demonstrated to provide security both in the theoretical and physical implementation. We report here a QKD system designed with this goal in mind, providing a more resilient target against possible hacking attacks including Trojan horse, detector blinding, phase randomisation and photon number splitting attacks. The QKD system was installed into a 45 km link of a metropolitan telecom network for a 2.5 month period, during which time the system operated continuously and distributed 1.33 Tbits of secure key data with a stable secure key rate over 200 kbit/s. In addition security is demonstrated against coherent attacks that are more general than the collective class of attacks usually considered.
机译:量子密钥分发(QKD)的核心和独特主张是信息理论安全性。但是,人们越来越认识到,QKD系统的安全性不仅取决于理论上的安全性证明,而且还取决于物理系统与理论模型的匹配程度以及防止由于差异而造成的攻击的紧密程度。这些旁通道或黑客攻击利用的物理设备不一定能达到理论预期的精确性能。因此,需要证明QKD系统在理论上和物理上都提供安全性。我们在此报告了一个为实现这一目标而设计的QKD系统,它针对可能的黑客攻击(包括特洛伊木马,检测器盲目,相位随机化和光子数分裂攻击)提供了更具弹性的目标。 QKD系统在2.5个月的时间内安装到城域电信网络的45公里长的链路中,在此期间,该系统连续运行并分发了1.33µTbits的安全密钥数据,其安全密钥速率稳定在200µkbit / s以上。此外,还展示了针对相干攻击的安全性,相干攻击通常比通常考虑的集体攻击更为普遍。

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