Ding Yu-Yang, Chen Wei, Chen Hua, Wang Chao, Li Ya-Ping, Wang Shuang, Yin Zhen-Qiang, Guo Guang-Can, Han Zheng-Fu
Opt Lett. 2017 Mar 15;42(6):1023-1026. doi: 10.1364/OL.42.001023.
The calibration of the polarization basis between the transmitter and receiver is an important task in quantum key distribution. A continuously working polarization-basis tracking scheme (PBTS) will effectively promote the efficiency of the system and reduce the potential security risk when switching between the transmission and calibration modes. Here, we proposed a single-photon level continuously working PBTS using only sifted key bits revealed during an error correction procedure, without introducing additional reference light or interrupting the transmission of quantum signals. We applied the scheme to a polarization-encoding BB84 QKD system in a 50 km fiber channel, and obtained an average quantum bit error rate (QBER) of 2.32% and a standard derivation of 0.87% during 24 h of continuous operation. The stable and relatively low QBER validates the effectiveness of the scheme.
发射端与接收端之间偏振基的校准是量子密钥分发中的一项重要任务。一种连续工作的偏振基跟踪方案(PBTS)将有效提高系统效率,并降低在传输模式与校准模式之间切换时的潜在安全风险。在此,我们提出了一种单光子水平的连续工作PBTS,该方案仅使用纠错过程中揭示的筛选密钥位,无需引入额外的参考光或中断量子信号的传输。我们将该方案应用于50 km光纤信道中的偏振编码BB84量子密钥分发系统,并在连续运行24小时期间获得了2.32%的平均量子误码率(QBER)和0.87%的标准偏差。稳定且相对较低的QBER验证了该方案的有效性。