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Finite-key security analyses on passive decoy-state QKD protocols with different unstable sources

机译:具有不同不稳定源的被动诱饵QKD协议的有限关键安全分析

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摘要

In quantum communication, passive decoy-state QKD protocols can eliminate many side channels, but the protocols without any finite-key analyses are not suitable for in practice. The finite-key securities of passive decoy-state (PDS) QKD protocols with two different unstable sources, type-II parametric down-convention (PDC) and phase randomized weak coherent pulses (WCPs), are analyzed in our paper. According to the PDS QKD protocols, we establish an optimizing programming respectively and obtain the lower bounds of finite-key rates. Under some reasonable values of quantum setup parameters, the lower bounds of finite-key rates are simulated. The simulation results show that at different transmission distances, the affections of different fluctuations on key rates are different. Moreover, the PDS QKD protocol with an unstable PDC source can resist more intensity fluctuations and more statistical fluctuation.
机译:在量子通信中,被动诱饵状态QKD协议可以消除许多侧通道,但是没有任何有限键分析的协议不适合实践。在我们的论文中分析了具有两个不同不稳定源,II型参数下源(PDC)和相随机弱相干脉冲(WCP)的无源诱饵状态(PDS)QKD协议的有限关键证券。根据PDS QKD协议,我们分别建立了优化编程,并获得有限键速率的下限。在量子设置参数的一些合理值下,模拟有限键速率的下限。仿真结果表明,在不同的传输距离下,对密钥率不同波动的影响是不同的。此外,具有不稳定PDC源的PDS QKD协议可以抵抗更多强度波动和更大的统计波动。

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