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使用偏振无关频率上转换探测器的差分相移量子密钥分发现场试验。

Field trial of differential-phase-shift quantum key distribution using polarization independent frequency up-conversion detectors.

作者信息

Honjo T, Yamamoto S, Yamamoto T, Kamada H, Nishida Y, Tadanaga O, Asobe M, Inoue K

出版信息

Opt Express. 2007 Nov 26;15(24):15920-7. doi: 10.1364/oe.15.015920.

Abstract

We report a field trial of differential phase shift quantum key distribution (QKD) using polarization independent frequency up-conversion detectors. A frequency up-conversion detector is a promising device for achieving a high key generation rate when combined with a high clock rate QKD system. However, its polarization dependence prevents it from being applied to practical QKD systems. In this paper, we employ a modified polarization diversity configuration to eliminate the polarization dependence. Applying this method, we performed a long-term stability test using a 17.6-km installed fiber. We successfully demonstrated stable operation for 6 hours and achieved a sifted key generation rate of 120 kbps and an average quantum bit error rate of 3.14 %. The sifted key generation rate was not the estimated value but the effective value, which means that the sifted key was continuously generated at a rate of 120 kbps for 6 hours.

摘要

我们报告了一项使用偏振无关频率上转换探测器的差分相移量子密钥分发(QKD)现场试验。频率上转换探测器与高时钟速率QKD系统结合使用时,是实现高密钥生成率的一种有前景的器件。然而,其偏振依赖性使其无法应用于实际的QKD系统。在本文中,我们采用一种改进的偏振分集配置来消除偏振依赖性。应用此方法,我们使用一条已安装的17.6公里光纤进行了长期稳定性测试。我们成功演示了6小时的稳定运行,实现了120 kbps的筛选密钥生成率和3.14%的平均量子比特误码率。筛选密钥生成率是有效率而非估计值,这意味着筛选密钥以120 kbps的速率持续生成了6小时。

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