论文标题

高速高斯调制的连续变化量子密钥分布与基于试验性调节相补偿的本地振荡器

High-speed Gaussian modulated continuous-variable quantum key distribution with a local local oscillator based on pilot-tone-assisted phase compensation

论文作者

Wang, Heng, Pi, Yaodi, Huang, Wei, Li, Yang, Shao, Yun, Yang, Jie, Liu, Jinlu, Zhang, Chenlin, Zhang, Yichen, Xu, Bingjie

论文摘要

具有局部局部振荡器(LLO)的高速高斯调制连续变量量子键分布(CVQKD),基于试验辅助相位补偿,实验证明。在拟议的方案中,频率 - 培训和极化 - 培训技术用于量子信号和飞行员音调之间的单独传输和异差检测,可确保从较弱的量子信号到弱量子信号的串扰,以及对量子信号的不同检测要求,用于量子信号和高饱和度限制。此外,与基于同源性检测的常规CVQKD相比,提出的LLO-CVKD方案可以使用额外的检测同时测量X和P正交,而无需额外的随机选择。此外,由于两个独立激光器的相对相以及量子通道干扰引入的缓慢降落相噪声,该相位噪声已被实验进行了实验补偿,因此,在25公里光纤通道中获得了低水平的噪声,以实验,以实现25公里的噪声水平,以实现5.04 mbps的范围内,并在7.04 mbps中获得7.04 MBPS和1.85的范围。 10^7。

A high-speed Gaussian modulated continuous-variable quantum key distribution (CVQKD) with a local local oscillator (LLO) is experimentally demonstrated based on pilot-tone-assisted phase compensation. In the proposed scheme, the frequency-multiplexing and polarization-multiplexing techniques are used for the separate transmission and heterodyne detection between quantum signal and pilot tone, guaranteeing no crosstalk from strong pilot tone to weak quantum signal and different detection requirements of low-noise for quantum signal and high-saturation limitation for pilot tone. Moreover, compared with the conventional CVQKD based on homodyne detection, the proposed LLO-CVQKD scheme can measure X and P quadrature simultaneously using heterodyne detection without need of extra random basis selection. Besides, the phase noise, which contains the fast-drift phase noise due to the relative phase of two independent lasers and the slow-drift phase noise introduced by quantum channel disturbance, has been compensated experimentally in real time, so that a low level of excess noise with a 25km optical fiber channel is obtained for the achievable secure key rate of 7.04 Mbps in the asymptotic regime and 1.85 Mbps under the finite-size block of 10^7.

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