Ding Yu-Yang, Chen Hua, Wang Shuang, He De-Yong, Yin Zhen-Qiang, Chen Wei, Zhou Zheng, Guo Guang-Can, Han Zheng-Fu
Opt Express. 2017 Oct 30;25(22):27923-27936. doi: 10.1364/OE.25.027923.
Polarization variations in the installed fibers are complex and volatile, and would severely affect the performances of polarization-sensitive quantum key distribution (QKD) systems. Based on the recorded data about polarization variations of different installed fibers, we establish an analytical methodology to quantitatively evaluate the influence of polarization variations on polarization-sensitive QKD systems. Using the increased quantum bit error rate induced by polarization variations as a key criteria, we propose two parameters - polarization drift time and required tracking speed - to characterize polarization variations. For field buried and aerial fibers with different length, we quantitatively evaluate the influence of polarization variations, and also provide requirements and suggestions for polarization basis alignment modules of QKD systems deployed in different kind of fibers.
已安装光纤中的偏振变化复杂且易变,会严重影响偏振敏感量子密钥分发(QKD)系统的性能。基于记录的不同已安装光纤的偏振变化数据,我们建立了一种分析方法,以定量评估偏振变化对偏振敏感QKD系统的影响。以偏振变化引起的量子误码率增加作为关键标准,我们提出了两个参数——偏振漂移时间和所需跟踪速度——来表征偏振变化。对于不同长度的野外埋地光纤和架空光纤,我们定量评估了偏振变化的影响,并为部署在不同类型光纤中的QKD系统的偏振基对准模块提供了要求和建议。