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Repeaterless quantum key distribution with efficient finite-key analysis overcoming the rate-distance limit

机译:无中继器量子密钥分配通过有效的有限键分析克服了速率-距离限制

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摘要

Quantum key distribution (QKD) over a point-to-point link enables us to benefit from a genuine quantum effect even with conventional optics tools such as lasers and photon detectors, but its capacity is limited to a linear scaling of the repeaterless bound. Recently, twin-field (TF) QKD was conjectured to beat the limit by using an untrusted central station conducting a single-photon interference detection. So far, the effort to prove the conjecture was confined to the infinite key limit which neglected the time and cost for monitoring an adversary’s act. Here we propose a variant of TF-type QKD protocol equipped with a simple methodology of monitoring to reduce its cost and provide an information-theoretic security proof applicable to finite communication time. We simulate the key rate to show that the protocol beats the linear bound in a reasonable running time of sending 1012 pulses, which positively solves the conjecture.
机译:点对点链接上的量子密钥分配(QKD)使我们即使使用诸如激光和光子检测器之类的常规光学工具,也能从真正的量子效应中受益,但其能力仅限于无中继器边界的线性缩放。最近,通过使用不受信任的进行单光子干扰检测的中央站,推测双场(TF)QKD可以超越极限。到目前为止,证明这一推测的努力仅限于无限的密钥限制,而密钥限制忽略了监视敌手行为的时间和成本。在这里,我们提出了一种TF型QKD协议的变体,该协议配备了一种简单的监视方法以降低其成本并提供适用于有限通信时间的信息理论安全性证明。我们通过仿真密钥率来证明该协议在发送10个 12 个脉冲的合理运行时间内超过了线性边界,从而很好地解决了这一猜想。

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