Opt Lett. 2023 Apr 1;48(7):1766-1769. doi: 10.1364/OL.485913.
We experimentally demonstrated a sub-Mbps key rate Gaussian-modulated coherent-state (GMCS) continuous-variable quantum key distribution (CV-QKD) over a 100-km transmission distance. To efficiently control the excess noise, the quantum signal and the pilot tone are co-transmitted in the fiber channel based on wideband frequency and polarization multiplexing methods. Furthermore, a high-accuracy data-assisted time domain equalization algorithm is carefully designed to compensate the phase noise and polarization variation in low signal-to-noise ratio. The asymptotic secure key rate (SKR) of the demonstrated CV-QKD is experimentally calculated to be 7.55 Mbps, 1.87 Mbps, and 0.51 Mbps over a transmission distance of 50 km, 75 km, and 100 km, respectively. The experimentally demonstrated that the CV-QKD system significantly improves the transmission distance and SKR compared to the state-of-art GMCS CV-QKD experimental results, and shows the potential for long-distance and high-speed secure quantum key distribution.
我们通过实验演示了一种亚兆比特/秒的密钥率高斯调制连续变量量子密钥分发(CV-QKD),传输距离达到 100 公里。为了有效地控制额外噪声,量子信号和导频在光纤信道中基于宽带频率和偏振复用方法进行共传输。此外,精心设计了一种高精度的数据辅助时域均衡算法,以补偿低信噪比下的相位噪声和偏振变化。实验计算得到的演示 CV-QKD 的渐近安全密钥率(SKR)分别为 50km、75km 和 100km 传输距离下的 7.55Mbps、1.87Mbps 和 0.51Mbps。实验证明,与最先进的 GMCS CV-QKD 实验结果相比,CV-QKD 系统显著提高了传输距离和 SKR,显示了长距离和高速安全量子密钥分发的潜力。