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Quantum identity authentication protocol based on three-photon quantum error avoidance code in edge computing
Transactions on Emerging Telecommunications Technologies ( IF 2.5 ) Pub Date : 2020-04-03 , DOI: 10.1002/ett.3945
Zhiguo Qu 1, 2 , Xinzhu Liu 1 , Shengyao Wu 2
Affiliation  

Information security protection is always one of very significant and fundamental issues in edge computing, generally including cryptography, authentication, intrusion detection, privacy protection, and other technologies, and so forth. Quantum authentication is one of the latest extensions of authentication technology in quantum field. So far, most of the quantum identity authentication protocols proposed are based on noise-free environments. However, due to the existence of quantum noise in quantum channels is inevitable, the noise immunity is very important to quantum identity authentication. In this article, a novel quantum identity authentication protocol based on three-photon error avoidance code is proposed. In this protocol, quantum information is encoded on the noiseless subsystem, so the protocol can effectively resist on the interference of noise in the quantum channel to information transmission. The comprehensive analysis of antinoise performance and the security analysis on various eavesdropping attacks shows that the new protocol proposed in this article has not only good antinoise performance but also good security.

中文翻译:

边缘计算中基于三光子量子纠错码的量子身份认证协议

信息安全保护一直是边缘计算中非常重要和基础的问题之一,一般包括密码学、身份验证、入侵检测、隐私保护等技术。量子认证是量子领域认证技术的最新扩展之一。到目前为止,提出的大多数量子身份认证协议都是基于无噪声环境的。然而,由于量子信道中不可避免地存在量子噪声,因此抗噪性对于量子身份认证非常重要。本文提出了一种基于三光子防错码的新型量子身份认证协议。在该协议中,量子信息在无噪声子系统上进行编码,因此该协议可以有效抵抗量子信道中噪声对信息传输的干扰。综合抗噪性能分析和对各种窃听攻击的安全性分析表明,本文提出的新协议不仅具有良好的抗噪性能,而且具有良好的安全性。
更新日期:2020-04-03
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