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首页> 外文期刊>Metrology and Measurement Systems: Metrologia i Systemy Pomiarowe >A NEW OPTICAL FREQUENCY TRANSFER METHOD VIA FIBRE BASED ON ACTIVE PHASE NOISE COMPENSATION WITH SINGLE ACOUSTO-OPTIC MODULATOR
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A NEW OPTICAL FREQUENCY TRANSFER METHOD VIA FIBRE BASED ON ACTIVE PHASE NOISE COMPENSATION WITH SINGLE ACOUSTO-OPTIC MODULATOR

机译:基于单声道光调制器的主动相位噪声补偿的光纤新光学频率传递方法

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In this paper, we propose and experimentally demonstrate a new method for optical frequency transfer over fibre. Instead of dual acousto-optic modulators (AOMs) as adopted in the traditional fibre phase noise compensation setup, here an active fibre phase noise compensation scheme with a single acousto-optic modulator (AOM) is used. The configuration simplifies the equipment of the user end while maintaining a high-performance optical frequency transfer stability. We demonstrate an actively stabilized coherent transfer at an optical frequency of 193.55THz over 10-km spooled fibre, obtaining a relative frequency stability (Allan deviation) of 3:84 10~(-16)/1 s and 4:08 10~(-18)/10~4 s, which is improved by about 23 orders of magnitude in comparison with the one without any phase noise compensation that achieves a relative frequency stability of 1:81 10~(-14)/1 s and 2:48 10~(-15)/10~4 s.
机译:在本文中,我们提出并通过实验证明了一种新的光学频率转移方法。除了传统光纤相位噪声补偿装置中采用的,而不是双声光调制器(AOMS),这里使用具有单个声光调制器(AOM)的有源光纤相位噪声补偿方案。配置在保持高性能光学频率传递稳定性的同时简化用户端的设备。我们证明了193.55次的光学频率的主动稳定的相干转移超过10公里的螺纹纤维,获得3:84 10〜(-16)/ 1 s和4:08 10〜()的相对频率稳定性(ALLAN偏差)。 -18)/ 10〜4 s,与没有任何相位噪声补偿的没有任何相位噪声补偿,改善了大约23个级,实现了1:81 10〜(-14)/ 1 s和2的相对频率稳定性: 48 10〜(-15)/ 10〜4秒。

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