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Analysis of Sagnac Correction for Time Transfer in Optical Fibers

机译:光纤中时转时间转移的锯齿状校正分析

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Over the past few years, atomic clocks have been improving and are now reaching stabilities and accuracies of a few parts in 1018 in fractional frequency. Fiber-based time and frequency transfer techniques have demonstrated excellent performance in the comparison of state-of-art optical atomic clocks over thousands of kilometers. For highly accurate time and frequency transfers, rela-tivistic effects which affect the signal propagation in optical fibers, need to be taken into account. The most important is the Sagnac correction because of the computation complexity and also the non-reciprocity in the two-way time transfer. Sagnac correction is an important source of uncertainty in fiber-based time and frequency transfer. Besides, not all important parameters are known with sufficient precision when we compute the Sagnac correction such as the large position error of fiber nodes and also the sparse fiber nodes. It is necessary to evaluate the Sagnac correction due to imperfect knowledge of parameters. In our work, several simulation fiber links in China are analyzed as specific examples to evaluate the influences of imperfect knowledge on the accuracy of the time transfer. The results show that in order to ensure one picosecond precision of time transfer using optical fiber, position accuracy of nodes should be higher than 500 m when the information of enough number of nodes can be obtained.
机译:在过去的几年里,原子钟已经改善,现在在1018中以分数频率达到稳定性和准确性。基于光纤的时间和频率传递技术在比较千公里的最先进的光学原子钟比较方面表现出优异的性能。对于高度准确的时间和频率转移,需要考虑影响光纤中信号传播的Rela-Tivistic效果。最重要的是由于计算复杂性以及双向时间转移中的非互动性,最重要的是Sagnac校正。 SAGNAC校正是基于光纤的时间和频率传输的不确定性的重要来源。此外,当我们计算光纤节点的大位置误差等诸如稀疏光纤节点的大位置误差时,并非所有重要参数都是充分的精度。由于对参数的不完美知识,有必要评估Sagnac校正。在我们的工作中,中国的几种模拟光纤链接被分析为具体例子,以评估不完美了解对时间转移准确性的影响。结果表明,为了确保使用光纤传输的一个皮秒,节点的位置精度应该高于500μm,当可以获得足够数量的节点的信息。

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