论文标题

测量设备不依赖量子秘密共享的破坏率距离限制

Breaking Rate-Distance Limitation of Measurement-Device-Independent Quantum Secret Sharing

论文作者

Li, Chen-Long, Fu, Yao, Liu, Wen-Bo, Xie, Yuan-Mei, Li, Bing-Hong, Zhou, Min-Gang, Yin, Hua-Lei, Chen, Zeng-Bing

论文摘要

目前,量子秘密共享的大多数进展受到利率距离的约束,因此关键利率受到限制。除了关键利率有限之外,技术困难和相应的成本共同防止了大规模部署。此外,在不考虑参与者攻击的情况下,在渐近制度中分析了大多数现有协议的性能。在这里,我们报告了一个无关测量设备的量子秘密共享协议,并提高了关键率和传输距离。基于空间多路复用,我们的协议表明,它可以在至少十个通信各方下打破网络上的速率距离界限。与其他协议相比,我们的工作将秘密关键率提高了两个以上的数量级,并且具有更长的传输距离。我们考虑参与者攻击并评估其在有限尺寸的制度中的绩效,分析了协议的安全性。此外,我们调查将协议应用于数字签名,在数字签名中,与现有协议相比,签名率的提高了$ 10^7 $倍。我们预计我们的量子秘密共享协议将为量子网络上的多方应用程序提供稳固的未来。

Currently most progresses on quantum secret sharing suffer from rate-distance bound, and thus the key rates are limited. In addition to the limited key rate, the technical difficulty and the corresponding cost together prevent large-scale deployment. Furthermore, the performance of most existing protocols is analyzed in the asymptotic regime without considering participant attacks. Here we report a measurement-device-independent quantum secret sharing protocol with improved key rate and transmission distance. Based on spatial multiplexing, our protocol shows it can break rate-distance bounds over network under at least ten communication parties. Compared with other protocols, our work improves the secret key rate by more than two orders of magnitude and has a longer transmission distance. We analyze the security of our protocol in the composable framework considering participant attacks and evaluate its performance in the finite-size regime. In addition, we investigate applying our protocol to digital signatures where the signature rate is improved more than $10^7$ times compared with existing protocols. We anticipate that our quantum secret sharing protocol will provide a solid future for multiparty applications on the quantum network.

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