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Security of Continuous-Variable Quantum Key Distribution with Imperfect Phase Compensation

机译:具有不完善相位补偿的连续可变量子密钥分发的安全性

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摘要

Phase compensation is a necessary procedure in practical application of continuous-variable quantum key distribution (CVQKD) for the reason of unavoidable phase drifts of quantum signals in quantum channel. However, the phase compensation may become imperfect in practical applications. The security of CVQKD scheme with imperfect phase compensation is investigated under realistic conditions of quantum channel and detector. In particular, a tight security bound to the phase noise of the imperfect phase compensation are derived for reverse reconciliation and realistic homodyne detection. Moreover, the phase noise is analyzed experimentally and a practical phase compensation procedure is applied to simulate the imperct processing. The simulation results show its coincidence to the security bound, and reveal the sensitivity of the security of the reverse reconciliation CVQKD protocol to the noise arising from imperfect phase compensation.
机译:由于量子信道中量子信号不可避免的相位漂移,相位补偿是连续可变量子密钥分配(CVQKD)实际应用中的必要步骤。但是,相位补偿在实际应用中可能会变得不完善。研究了在量子信道和检测器的实际条件下具有不完美相位补偿的CVQKD方案的安全性。特别地,导出了与不完美相位补偿的相位噪声相关的严格安全性,以用于反向调节和实际零差检测。此外,对相位噪声进行了实验分析,并采用了一种实用的相位补偿程序来模拟缺陷处理。仿真结果表明了其与安全性边界的一致性,并揭示了逆和解CVQKD协议的安全性对相位补偿不完善引起的噪声的敏感性。

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