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Tight finite-key security for twin-field quantum key distribution

机译:双场量子密钥分配的紧密有限关键安全性

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摘要

Quantum key distribution (QKD) offers a reliable solution to communication problems that require long-term data security. For its widespread use, however, the rate and reach of QKD systems must be improved. Twin-field (TF) QKD is a step forward toward this direction, with early demonstrations suggesting it can beat the current rate-versus-distance records. A recently introduced variant of TF-QKD is particularly suited for experimental implementation, and has been shown to offer a higher key rate than other variants in the asymptotic regime, where users exchange an infinite number of signals. Here, we extend the security of this protocol to the finite-key regime, showing that it can overcome the fundamental bounds on point-to-point QKD with ~1010 transmitted signals. In many practical regimes of interest, our analysis offers higher key rates than those of alternative variants. Moreover, some of the techniques we develop are applicable to the finite-key analysis of other QKD protocols.
机译:量子密钥分布(QKD)为需要长期数据安全性的通信问题提供可靠的解决方案。 但是,对于其广泛的使用,必须提高QKD系统的速率和范围。 双场(TF)QKD是向前迈向这方面的一步,早期演示暗示它可以击败当前速率 - 与距离记录。 最近引入的TF-QKD变体特别适用于实验实施,并且已被证明提供比渐近制度中的其他变体更高的关键率,用户交换无限数量的信号。 在这里,我们将此协议的安全性扩展到有限关键状态,显示它可以克服点对点QKD的基本边界,其中〜1010发送信号。 在许多实际的兴趣制度中,我们的分析提供比其他变体更高的关键率。 此外,我们开发的一些技术适用于其他QKD协议的有限关键分析。

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