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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Statistical fluctuation analysis for measurement-device-independent quantum key distribution with three-intensity decoy-state method
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Statistical fluctuation analysis for measurement-device-independent quantum key distribution with three-intensity decoy-state method

机译:基于三强度诱饵态方法的与测量设备无关的量子密钥分布的统计涨落分析

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摘要

We present an improved statistical fluctuation analysis for measurement-device-independent quantum key distribution with a three-intensity decoy-state method. Taking the statistical fluctuations for different sources jointly, we present more tightened formulas for some key quantities used in calculating the secure final key. Numerical simulation shows that, given the total number of pulses 10(12), our method improves the key rate by about 97% for a distance of 50 km compared with the result given by Xu et al. [F. Xu et al., Phys. Rev. A 89, 052333 (2014)], and improves the key rate by 145% for a distance of 100 km compared with the result from full optimization of all parameters but treating the statistical fluctuations traditionally, i.e., treating the fluctuations for different sources separately.
机译:我们提出了一种改进的统计波动分析,用于测量设备独立的量子强度分布,具有三强度诱饵态方法。结合不同来源的统计波动,我们针对用于计算安全最终密钥的一些密钥数量,提供了更为严格的公式。数值模拟表明,在给定的脉冲总数为10(12)的情况下,与Xu等人给出的结果相比,我们的方法在50 km的距离内将关键率提高了约97%。 [F。 Xu等,Phys。 Rev. A 89,052333(2014)],并且与完全优化所有参数但传统上处理统计波动(即处理不同来源的波动)相比,对于100 km的距离,密钥率提高了145%分别。

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