论文标题

诱饵状态量子密钥分布的紧密安全范围

Tight security bounds for decoy-state quantum key distribution

论文作者

Yin, Hua-Lei, Zhou, Min-Gang, Gu, Jie, Xie, Yuan-Mei, Lu, Yu-Shuo, Chen, Zeng-Bing

论文摘要

BB84量子密钥分布(QKD)与诱饵状态方法相结合是目前最实用的协议,已证明这是有限键制度中一般攻击的安全性。那里的统计波动分析方法在处理有限键效应方面非常重要,这直接影响秘密关键率,安全传输距离甚至最重要的安全性。在诱饵状态BB84 QKD中,有两项统计波动的任务。一个是给定期望值或观察值的期望值与观察值之间的偏差。另一个是计算基础的相位错误率与二元错误率之间的偏差。在这里,我们提供了严格且最佳的分析公式来解决上述任务,从而导致较高的秘密关键率和更长的安全传输距离。我们的结果可以广泛应用于量子密码学方案中的统计波动。

The BB84 quantum key distribution (QKD) combined with decoy-state method is currently the most practical protocol, which has been proved secure against general attacks in the finite-key regime. Thereinto, statistical fluctuation analysis methods are very important in dealing with finite-key effects, which directly affect secret key rate, secure transmission distance and even the most important security. There are two tasks of statistical fluctuation in decoy-state BB84 QKD. One is the deviation between expected value and observed value for a given expected value or observed value. The other is the deviation between phase error rate of computational basis and bit error rate of dual basis. Here, we provide the rigorous and optimal analytic formula to solve the above tasks, resulting higher secret key rate and longer secure transmission distance. Our results can be widely applied to deal with statistical fluctuation in quantum cryptography protocols.

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