论文标题

使用时间相编码

Experimental composable security decoy-state quantum key distribution using time-phase encoding

论文作者

Yin, Hua-Lei, Liu, Peng, Dai, Wei-Wei, Ci, Zhao-Hui, Gu, Jie, Gao, Tian, Wang, Qiang-Wei, Shen, Zi-Yao

论文摘要

量子密钥分布(QKD)承诺可证明安全通信。为了提高秘密关键率,提出了将有偏见的基础选择与诱饵方法相结合的。同时,存在与基础无关的检测效率条件,通常在实际系统中无法满足,例如时间相编码。幸运的是,该缺陷最近通过以下事实在理论上和实验上删除了,即在两个基础上制备的单光子状态的预期产量在给定的测量基础上保持不变。但是,安全证明并未完全考虑一般攻击的有限键效应。在这项工作中,我们为四强诱饵态BB84 QKD提供了严格的有限键安全界限,以防止在普遍合成的框架中进行连贯的攻击。此外,我们构建了一个时间相编码系统,其时钟为200 MHz来实现此协议,其中实时秘密密钥速率超过50 km单模光纤。

Quantum key distribution (QKD) promises provably secure communications. In order to improve the secret key rate, combining a biased basis choice with the decoy-state method is proposed. Concomitantly, there is a basis-independent detection efficiency condition, which usually cannot be satisfied in a practical system, such as the time-phase encoding. Fortunately, this flaw has been recently removed theoretically and experimentally using the fact that the expected yields of single-photon states prepared in two bases stay the same for a given measurement basis. However, the security proofs do not fully consider the finite-key effects for general attacks. In this work, we provide the rigorous finite-key security bounds for four-intensity decoy-state BB84 QKD against coherent attacks in the universally composable framework. Furthermore, we build a time-phase encoding system with 200 MHz clocked to implement this protocol, in which the real-time secret key rate is more than 60 kbps over 50 km single-mode fiber.

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