Wang Heng, Pi Yaodi, Huang Wei, Li Yang, Shao Yun, Yang Jie, Liu Jinlu, Zhang Chenlin, Zhang Yichen, Xu Bingjie
Opt Express. 2020 Oct 26;28(22):32882-32893. doi: 10.1364/OE.404611.
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 25 km optical fiber channel (with 5 dB loss) 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.
基于导频音辅助相位补偿,实验演示了一种采用本地本振(LLO)的高速高斯调制连续变量量子密钥分发(CVQKD)。在所提出的方案中,频率复用和偏振复用技术用于量子信号与导频音之间的分离传输和外差检测,保证了强导频音对弱量子信号无串扰,以及量子信号对低噪声和导频音对高饱和限制的不同检测要求。此外,与基于零差检测的传统CVQKD相比,所提出的LLO-CVQKD方案可使用外差检测同时测量X和P正交分量,无需额外的随机基选择。此外,相位噪声,包括由于两个独立激光器的相对相位引起的快速漂移相位噪声和量子信道干扰引入的缓慢漂移相位噪声,已通过实验实时补偿,从而在25公里光纤信道(损耗5分贝)中获得了低水平的过量噪声,在渐近区域可实现的安全密钥率为7.04 Mbps,在10的有限尺寸块下为1.85 Mbps。