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Source-Manipulating Wavelength-Dependent Continuous-Variable Quantum Key Distribution with Heterodyne Detectors

机译:基于外差探测器的源操纵波长相关连续可变量子密钥分发

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摘要

The intensities of signal and local oscillator (LO) can be elegantly manipulated for the noise-based quantum system while manipulating the wavelength-dependent modulation in source to increase the performance of the continuous-variable key distribution in terms of the secret key rate and maximal transmission distance. The source-based additional noises can be tuned and stabilized to the suitable values to eliminate the effect of the LO fluctuations and defeat the potential attacks in imperfect quantum channels. It is firmly proved that the secret key rate can be manipulated in source over imperfect channels by the intensities of signal and LO with different wavelengths, which have an effect on the optimal signal-to-noise ratio of the heterodyne detectors resulting from the detection efficiency and the additional electronic noise as well. Simulation results show that there is a nice balance between the secret key rate and the maximum transmission distance.
机译:对于基于噪声的量子系统,可以优雅地操纵信号和本振(LO)的强度,同时操纵源中与波长相关的调制,以提高连续可变密钥分发在密钥速率和最大传输距离方面的性能。基于源的附加噪声可以被调谐并稳定到合适的值,以消除LO波动的影响,并击败不完美量子通道中的潜在攻击。结果证明,在不完美信道上,不同波长的信号和LO的强度可以操纵源中的密钥速率,这对外差探测器的最佳信噪比有影响,检测效率和附加电子噪声也影响其特性。仿真结果表明,密钥速率与最大传输距离之间有很好的平衡。

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