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用于安全诱骗态量子密钥分发的图案化效应缓解强度调制器。

Patterning-effect mitigating intensity modulator for secure decoy-state quantum key distribution.

出版信息

Opt Lett. 2018 Oct 15;43(20):5110-5113. doi: 10.1364/OL.43.005110.

Abstract

Quantum key distribution (QKD) is a technology that allows two users to exchange cryptographic keys securely. The decoy state technique enhances the technology, ensuring keys can be shared at high bit rates over long distances with information theoretic security. However, imperfections in the implementation, known as side-channels, threaten the perfect security of practical QKD protocols. Intensity modulators are required for high-rate decoy-state QKD systems, although these are unstable and can display a side channel where the intensity of a pulse is dependent on the previous pulse. Here we demonstrate the superior practicality of a tunable extinction ratio Sagnac-based intensity modulator (IM) for practical QKD systems. The ability to select low extinction ratios, alongside the immunity of Sagnac interferometers to DC drifts, ensures that random decoy state QKD patterns can be faithfully reproduced with the patterning effects mitigated. The inherent stability of Sagnac interferometers also ensures that the modulator output does not wander over time.

摘要

量子密钥分发(QKD)是一种允许两个用户安全地交换密码密钥的技术。诱骗态技术增强了该技术,确保可以以高比特率在长距离上共享具有信息论安全性的密钥。然而,实现中的不完善之处,称为侧信道,威胁到实际 QKD 协议的完美安全性。高速率诱骗态 QKD 系统需要强度调制器,尽管这些调制器不稳定,并且可以显示出一个侧信道,其中脉冲的强度取决于前一个脉冲。在这里,我们展示了基于可调消光比 Sagnac 的强度调制器(IM)在实际 QKD 系统中的优越实用性。选择低消光比的能力,以及 Sagnac 干涉仪对直流漂移的免疫能力,确保可以真实地再现随机诱骗态 QKD 模式,同时减轻了图案效应。Sagnac 干涉仪的固有稳定性还确保调制器输出不会随时间漂移。

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