In this paper, we propose a new theoretical scheme for quantum secure direct communication (QSDC) with user authentication. Different from the previous QSDC protocols, the present protocol uses only one orthogonal basis of single-qubit states to encode the secret message. Moreover, this is a one-time and one-way communication protocol, which uses qubits prepared in a randomly chosen arbitrary basis, to transmit the secret message. We discuss the security of the proposed protocol against some common attacks and show that no eaves-dropper can get any information from the quantum and classical channels. We have also studied the performance of this protocol under realistic device noise. We have executed the protocol in IBMQ Armonk device and proposed a repetition code based protection scheme that requires minimal overhead.
翻译:在本文中,我们提出了一个新的理论方案,用于使用用户认证的量子安全直接通信(QSDC),与以前的QSDC协议不同,本协议仅使用单一方位国家的一个正方位基础来编码这一秘密信息,此外,这是一次性和单向通信协议,使用随机任意选择的 ⁇ 来传递这一秘密信息。我们讨论了拟议协议的安全性,以对付一些常见袭击,并表明任何窃听器都无法从量子和古典渠道获得任何信息。我们还在现实的装置噪音下研究了这一协议的履行情况。我们已经在IBMQ Armonk装置中执行了协议,并提出了一个基于代码的重复保护计划,该计划要求最低的间接费用。