论文标题

自动相校正的多节点光学频率传播

Multi-node optical frequency dissemination with post automatic phase correction

论文作者

Hu, Liang, Tian, Xueyang, Wu, Guiling, Kong, Mengya, Shen, Jianguo, Chen, Jianping

论文摘要

我们报告了一种通过纤维链路连贯传递激光光的技术,在该技术中,环境扰动通过光纤链路引起的光相噪声由具有被动相噪声校正的远程用户补偿,而不是在输入中,而不是常规的输入。由于开环设计,相位歧视和主动相位跟踪都不需要,从而减轻了一些技术问题,例如有限的补偿速度和有限补偿精度,作为传统的主动相位噪声。我们从理论上分析并实验表明,延迟效应引入了噪声补偿后的残留纤维相噪声比常规技术高出7倍。使用此技术,我们通过145公里长的基于实验室的载体纤维演示了转移激光光。得到补偿后,在1S平均时间为1s的艾伦偏差的相对频率不稳定为1.9e-15,并在10,000 s平均时间下缩放5.3e-19。通过纤维相对于输入光的光纤转移后光的频率不确定性为-0.36+-2.6e-18。由于传输的光学信号一直没有变化,直到到达远程位点,因此可以同时将其传输到任意复杂的光纤网络上的多个远程位点,铺平了一种方法,以开发一种多节点光学频率传播系统,并使用自动相位噪声校正许多最终用户。

We report a technique for coherence transfer of laser light through a fiber link, where the optical phase noise induced by environmental perturbation via the fiber link is compensated by remote users with passive phase noise correction, rather than at the input as is conventional. Neither phase discrimination nor active phase tracking is required due to the open-loop design, mitigating some technical problems such as the limited compensation speed and the finite compensation precision as conventional active phase noise cancellation. We theoretically analyze and experimentally demonstrate that the delay effect introduced residual fiber phase noise after noise compensation is a factor of 7 higher than the conventional techniques. Using this technique, we demonstrate the transfer laser light through a 145-km-long, lab-based spooled fiber. After being compensated, the relative frequency instability in terms of overlapping Allan deviation is 1.9E-15 at 1s averaging time and scales down 5.3E-19 at 10,000 s averaging time. The frequency uncertainty of the light after transferring through the fiber relative to that of the input light is -0.36+-2.6E-18. As the transmitted optical signal remains unaltered until it reaches the remote sites, it can be transmitted simultaneously to multiple remote sites on an arbitrarily complex fiber network, paving a way to develop a multi-node optical frequency dissemination system with post automatic phase noise correction for a number of end users.

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