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Polarization attack on continuous-variable quantum key distribution system

机译:连续变量量子密钥分配系统上的偏振攻击

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The shot-noise unit (SNU) is a crucial factor for the practical security of a continuous-variable quantum key distribution system. In the most widely used experimental scheme, the SNU should be calibrated first and used as a constant during key distribution. Because the measurement result of quadrature is normalized with the calibration SNU but scaled with practical SNU, which could open loopholes for the eavesdropper to intercept the secret key. In this paper, we report a quantum hacking method to control the practical SNU by using the limited compensation rate for polarization drift. Since the polarization of local oscillator pulses is partially measured, the attack is implemented by manipulating the polarization of the local oscillator pulses without measurement when the system is running. The simulation and experiment results indicate that the practical SNU can be manipulated by the eavesdropper. By making the difference between the calibration and the practical SNU, the excess noise estimated by Alice and Bob could always be lower than the practice which is introduced by the eavesdropper and the distributed keys are not secure.
机译:射击噪声单元(SNU)是连续变量量子密钥分配系统实际安全性的关键因素。在最广泛使用的实验方案中,应首先校准SNU并在关键分布期间用作恒定。因为正交的测量结果用校准SNU标准化,但用实用的SNU缩放,这可以打开窃听器的漏洞以拦截秘密密钥。在本文中,我们通过使用有限的偏振漂移来报告使用有限的补偿速率来控制实际SNU的量子黑客方法。由于部分测量了本地振荡器脉冲的偏振,因此通过在系统运行时操纵本地振荡器脉冲的偏振来实现攻击。模拟和实验结果表明,可以通过窃听器操纵实用的SNU。通过校准和实际SNU之间的差异,Alice和Bob估计的过量噪声总是低于窃听器引入的实践,并且分布式键不安全。

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