论文标题

基于硅的解码器用于偏振编码量子键分布

Silicon-based decoder for polarization-encoding quantum key distribution

论文作者

Du, Yongqiang, Zhu, Xun, Hua, Xin, Zhao, Zhengeng, Hu, Xiao, Qian, Yi, Xiao, Xi, Wei, Kejin

论文摘要

基于硅的偏振编码量子键分布(QKD),由于其低成本和稳健性,已广泛研究。但是,鉴于在芯片上制造极化的独立组件的困难,先前的研究已经利用芯片外设备来解调量子状态或执行极化补偿。在本文中,我们提出了一个用于极化编码QKD的完全基于芯片的解码器。芯片实现了两极分化状态分析仪,并补偿了BB84协议,而无需其他硬件。它基于使用极化分离器旋转器的极化向路径转换方法。使用标准的硅光子铸造厂制造芯片;它具有紧凑的设计,适合大规模生产。在实验稳定性测试中,通过连续运行10小时实现了$ 0.56 \%$的平均量子位错误率,而无需任何极化反馈。此外,使用开发的反馈算法,芯片实现了纤维极化漂移的自动补偿,该纤维极化漂移由随机的光纤极化扰动器模拟。在QKD示范中,我们在100 km的纤维线轴上获得了240 bps的有限秘密速率。这项研究是朝着QKD系统的综合,实用和大规模部署迈出的重要一步。

Silicon-based polarization-encoding quantum key distribution (QKD) has been widely studied, owing to its low cost and robustness. However, prior studies have utilized off-chip devices to demodulate the quantum states or perform polarization compensation, given the difficulty of fabricating polarized independent components on the chip. In this paper, we propose a fully chip-based decoder for polarization-encoding QKD. The chip realizes a polarization state analyzer and compensates for the BB84 protocol without requiring additional hardware. It is based on a polarization-to-path conversion method that uses a polarization splitter-rotator. The chip was fabricated using a standard silicon photonics foundry; it has a compact design and is suitable for mass production. In the experimental stability test, an average quantum bit error rate of $0.56\%$ was achieved through continuous operation for 10 h without any polarization feedback. Furthermore, using the developed feedback algorithm, the chip enabled the automatic compensation of the fiber polarization drift, which was emulated by a random fiber polarization scrambler. In the case of the QKD demonstration, we obtained a finite-key secret rate of 240 bps over a fiber spool of 100 km. This study represents an important step toward the integrated, practical, and large-scale deployment of QKD systems.

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