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抽象自动化量子密钥分布(QKD)系统对于准确评估窃听信息至关重要。,我们使用基于平面光波电路(PLC)的混合不对称法拉第 - 米切尔森干涉仪(AFMI)开发并验证QKD的极敏感性的时间键解码器芯片。与现有的基于芯片的QKD作品相比,该方案可以内在补偿量子信号的极化扰动,从而在任意温度下工作。我们以1.25 GHz的时钟速率在实验桶QKD系统中实验验证芯片,并在50 kmfer通道上以优化的分析模型在50 kmfer通道上获得1.34 Mbps的平均安全密钥速率(SKR)。带有随机极化干扰的量子位误差和SKR的稳定变化表明,基于PLC的AFMI可用于开发自稳定QKD系统。