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Efficient travelling-mode quantum key agreement against participant's attacks
Wei-Cong Huang1, Yong-Kai Yang1, Dong Jiang2
1State Key Laboratory for Novel Software Technology, Nanjing University, Nanjing, 210046, P. R. China.
Abstract:
Quantum key agreement (QKA) is to negotiate a final key among several participants fairly and securely. In this paper, we show that some existing travelling-mode multiparty QKA protocols are vulnerable to internal participant's attacks. Dishonest participants can exploit a favorable geographical location or collude with other participants to predetermine the final keys without being discovered. To resist such attacks, we propose a new travelling-mode multiparty QKA protocol based on non-orthogonal Bell states. Theoretical analysis shows that the proposed protocol is secure against both external and internal attacks, and can achieve higher efficiency compared with existing travelling-mode multiparty QKA protocols. Finally we design an optical platform for each participant, and show that our proposed protocol is feasible with current technologies.
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