Chen Huan, Wang Jipeng, Tang Bangying, Li Zhenhua, Liu Bo, Sun Shihai
Opt Lett. 2020 Jun 1;45(11):3022-3025. doi: 10.1364/OL.392742.
Free-space quantum key distribution (QKD) based on mobile platforms, such as satellites, drones, and vehicles, is considered a promising way to overcome the rate-distance limit without a quantum repeater. Real-time reference frame calibration is required in most recent implemented polarization encoded QKD systems due to the relative motion between sender and receiver. Although active compensations can be used to calibrate the reference frame, doing so increases the complexity of the system and reduces the key rate. To overcome this problem, the reference-frame-independent (RFI) QKD was proposed in which fixed deviations of the reference frame between the two parties are tolerated automatically. In this Letter, we report the experimental implementation of a time-bin encoded RFI QKD in an urban environment through free space. The quantum bit error rate for key-distill is as low as 1% over a 2 km free-space link with a total equivalent loss of 31.5 dB. Our demonstration shows that a stable RFI QKD can be implemented in the free-space channel.
基于移动平台(如卫星、无人机和车辆)的自由空间量子密钥分发(QKD)被认为是一种在没有量子中继器的情况下克服速率-距离限制的有前途的方法。由于发送方和接收方之间的相对运动,在最近实现的偏振编码QKD系统中需要进行实时参考系校准。尽管可以使用主动补偿来校准参考系,但这样做会增加系统的复杂性并降低密钥率。为了克服这个问题,提出了独立于参考系(RFI)的QKD,其中双方之间参考系的固定偏差会自动被容忍。在本信函中,我们报告了通过自由空间在城市环境中进行时间编码RFI QKD的实验实现。在2公里的自由空间链路中,密钥提取的量子误码率低至1%,总等效损耗为31.5分贝。我们的演示表明,可以在自由空间信道中实现稳定的RFI QKD。