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Multiparty Simultaneous Quantum Secure Direct Communication Based on GHZ States and Mutual Authentication

机译:基于GHZ状态和相互认证的多方同时量子安全直接通信

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In the modern communication, multiparty communication plays a important role, and becomes more and more popular in the e-business and e-government society. In this paper, an efficient multiparty simultaneous quantum secure direct communication protocol is proposed by using GHZ states and dense coding, which is composed of two phases: the quantum state distribution process and the direct communication process. In order to prevent against the impersonators, a mutual identity authentication method is involved in both of the two processes. Analysis shows that it is secure against the eavesdropper's attacks, the impersonator's attacks, and some special Trent's attacks (including the attack by using different initial states). Moreover, Comparing with the other analogous protocols, the authentication method is more simple and feasible, and the present protocol is more efficient.
机译:在现代通信中,多方通信起着重要的作用,并在电子商务和电子政务社会中越来越流行。本文提出了一种利用GHZ状态和密集编码的高效多方同时量子安全直接通信协议,该协议由量子状态分布过程和直接通信过程两个阶段组成。为了防止冒名顶替者,这两个过程都涉及相互身份验证方法。分析表明,它对于窃听者的攻击,模仿者的攻击和某些特伦特的攻击(包括使用不同初始状态的攻击)是安全的。而且,与其他类似协议相比,认证方法更加简单可行,并且本协议更加有效。

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