Weng Chen-Xun, Lu Yu-Shuo, Gao Rui-Qi, Xie Yuan-Mei, Gu Jie, Li Chen-Long, Li Bing-Hong, Yin Hua-Lei, Chen Zeng-Bing
Opt Express. 2021 Aug 16;29(17):27661-27673. doi: 10.1364/OE.433656.
Quantum digital signatures (QDSs) promise information-theoretic security against repudiation and forgery of messages. Compared with currently existing three-party QDS protocols, multiparty protocols have unique advantages in the practical case of more than two receivers when sending a mass message. However, complex security analysis, numerous quantum channels and low data utilization efficiency make it intractable to expand three-party to multiparty scenario. Here, based on six-state non-orthogonal encoding protocol, we propose an effective multiparty QDS framework to overcome these difficulties. The number of quantum channels in our protocol only linearly depends on the number of users. The post-matching method is introduced to enhance data utilization efficiency and make it linearly scale with the probability of detection events even for five-party scenario. Our work compensates for the absence of practical multiparty protocols, which paves the way for future QDS networks.
量子数字签名(QDS)有望实现针对消息抵赖和伪造的信息理论安全性。与现有的三方QDS协议相比,在向多个接收者发送大量消息的实际场景中,多方协议具有独特优势。然而,复杂的安全性分析、大量的量子信道以及较低的数据利用效率使得将三方场景扩展到多方场景变得难以处理。在此,基于六态非正交编码协议,我们提出了一种有效的多方QDS框架来克服这些困难。我们协议中的量子信道数量仅与用户数量呈线性关系。引入后匹配方法以提高数据利用效率,即使在五方场景下也能使其与检测事件的概率呈线性比例关系。我们的工作弥补了实用多方协议的缺失,为未来的QDS网络铺平了道路。