计算机科学
编码(内存)
协议(科学)
量子
数字签名
签名(拓扑)
理论计算机科学
密码学
量子密码学
量子信道
计算机网络
分布式计算
量子计算机
比例(比率)
方案(数学)
数据传输
量子信息
量子密钥分配
量子点
作者
Chen-Xun Weng,Yu-Shuo Lu,Rui-Qi Gao,Yuan-Mei Xie,Jie Gu,Chen-Long Li,Bing-Hong Li,Hua-Lei Yin,Zeng-Bing Chen
出处
期刊:Optics Express
[Optica Publishing Group]
日期:2021-07-28
卷期号:29 (17): 27661-27661
被引量:22
摘要
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.
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