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Fiber-optic two-way quantum time transfer with frequency-entangled pulses

机译:具有频率缠结脉冲的光纤双向量子时间传输

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摘要

High-precision time transfer is of fundamental interest in physics and metrology. Quantum time transfer technologies that use frequency-entangled pulses and their coincidence detection have been proposed, offering potential enhancements in precision and better guarantees of security. In this paper, we describe a fiber-optic two-way quantum time transfer experiment. Using quantum nonlocal dispersion cancellation, time transfer over a 20-km fiber link achieves a time deviation of 922 fs over 5 s and 45 fs over 40 960 s. The time transfer accuracy as a function of fiber lengths from 15 m to 20 km is also investigated, and an uncertainty of 2.46 ps in standard deviation is observed. In comparison with its classical counterparts, the fiber-optic two-way quantum time transfer setup shows appreciable improvement, and further enhancements could be obtained by using new event timers with subpicosecond precision and single-photon detectors with lower timing jitter for optimized coincidence detection. Combined with its security advantages, the femtosecond-scale two-way quantum time transfer is expected to have numerous applications in high-precision middle-haul synchronization systems.
机译:高精度时间转移对物理和计量的基本兴趣。已经提出了使用频率缠绕脉冲和它们的重合检测的量子时间转移技术,以精确度和更好的安全保证提供潜在的增强。在本文中,我们描述了一种光纤双向量子时间转移实验。使用量子非局部色散消除,在20公里的光纤链路上传递实现922 fs超过5 s和45 fs超过40 960 s的时间偏差。还研究了作为纤维长度的函数的时间转移精度,观察到标准偏差2.46ps的不确定性。与其经典对应物相比,光纤双向量子时间传输设置显示了可明显的改进,并且可以通过使用具有较低时序抖动的子秒的精密和单光子检测器的新事件定时器来获得进一步的增强,用于优化重合检测。结合其安全优势,预计飞秒双向量子时间转移预计在高精度中间运输系统中具有许多应用。

著录项

  • 来源
    《Physical Review, A》 |2019年第2期|共8页
  • 作者单位

    Key Laboratory of Time and Frequency Primary Standards National Time Service Center Chinese Academy of Sciences Xi'an 710600 China;

    Key Laboratory of Time and Frequency Primary Standards National Time Service Center Chinese Academy of Sciences Xi'an 710600 China;

    Key Laboratory of Time and Frequency Primary Standards National Time Service Center Chinese Academy of Sciences Xi'an 710600 China;

    Key Laboratory of Time and Frequency Primary Standards National Time Service Center Chinese Academy of Sciences Xi'an 710600 China;

    Key Laboratory of Time and Frequency Primary Standards National Time Service Center Chinese Academy of Sciences Xi'an 710600 China;

    Key Laboratory of Time and Frequency Primary Standards National Time Service Center Chinese Academy of Sciences Xi'an 710600 China;

    State Key Laboratory of Functional Materials for Informatics Shanghai Institute of Microsystem and Information Technology Chinese Academy of Sciences Shanghai 200050 China;

    State Key Laboratory of Functional Materials for Informatics Shanghai Institute of Microsystem and Information Technology Chinese Academy of Sciences Shanghai 200050 China;

    State Key Laboratory of Functional Materials for Informatics Shanghai Institute of Microsystem and Information Technology Chinese Academy of Sciences Shanghai 200050 China;

    State Key Laboratory of Functional Materials for Informatics Shanghai Institute of Microsystem and Information Technology Chinese Academy of Sciences Shanghai 200050 China;

    Key Laboratory of Time and Frequency Primary Standards National Time Service Center Chinese Academy of Sciences Xi'an 710600 China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 物理学;分子物理学、原子物理学;原子核物理学、高能物理学;光学;
  • 关键词

    Fiber-optic; two-way; quantum;

    机译:光纤;双向;量子;

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