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Improved quantum key agreement protocol with authentication |
Ji-Hong Guo(郭继红)1,2,3, Ming-Qiang Bai(柏明强)1,2,3,†, Xiao-Yan Lei(雷小燕)1,2,3, Jia-Xin Xie(谢佳欣)1,2,3, and Zhi-Wen Mo(莫智文)1,2,3 |
1 Institute of Intelligent Information and Quantum Information, Sichuan Normal University, Chengdu 610068, China; 2 Research Center of Sichuan Normal University, National-Local Joint Engineering Laboratory of System Credibility Automatic Verification, Chengdu 610066, China; 3 School of Mathematical Sciences, Sichuan Normal University, Chengdu 610068, China |
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Abstract In order to make the quantum key agreement process immune to participant attacks, it is necessary to introduce the authentication in the communication process. A quantum key agreement protocol with identity authentication that exploits the measurement correlation of six-particle entangled states is proposed. In contrast to some recently proposed quantum key agreement protocols with authentication, this protocol requires neither a semi-trusted third party nor additional private keys in the authentication process. The entire process of authentication and key agreement can be achieved using only n six-particle entangled states, which saves communication costs and reduces the complexity of the authentication process. Finally, security analysis shows that this scheme is resistant to some important attacks.
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Received: 29 June 2022
Revised: 22 September 2022
Accepted manuscript online: 19 October 2022
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PACS:
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03.67.Dd
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(Quantum cryptography and communication security)
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03.67.Hk
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(Quantum communication)
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03.67.Ac
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(Quantum algorithms, protocols, and simulations)
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Fund: Project supported by the National Science Foundation of Sichuan Province, China (Grant No. 2022NSFSC0534), Major Science, and Techonolgy Application Demonstration Project in Chengdu (Grant No. 2021-YF09-0116-GX). |
Corresponding Authors:
Ming-Qiang Bai
E-mail: baimq@sicnu.edu.cn
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Cite this article:
Ji-Hong Guo(郭继红), Ming-Qiang Bai(柏明强), Xiao-Yan Lei(雷小燕), Jia-Xin Xie(谢佳欣), and Zhi-Wen Mo(莫智文) Improved quantum key agreement protocol with authentication 2023 Chin. Phys. B 32 050310
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