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Ultra-stable long distance optical frequency distribution using the Internet fiber network and application to high-precision molecular spectroscopy.

机译:超稳定的长距离光学频率分布,使用互联网光纤网络和应用于高精度分子谱。

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We report an optical link of 540 km for ultrastable frequency distribution over the Internet fiber network. The phase-noise compensated link shows a fractional frequency instability in full bandwidth of 3×10~(-14) at one second measurement time and 2×10~(-18) at 30 000 s. This work is a significant step towards a sustainable wide area ultrastable optical frequency distribution and comparison network. Time transfer was demonstrated simultaneously on the same link and led to an absolute time accuracy (250 ps) and long-term timing stability (20 ps) which outperform the conventional satellite transfer methods by one order of magnitude. Current development addresses the question of multiple users distribution in the same metropolitan area. We demonstrate on-line extraction and first results show frequency stability at the same level as with conventional link. We also report an application to coherent frequency transfer to the mid-infrared. We demonstrate the frequency stabilisation of a mid-infrared laser to the near-infrared frequency reference transferred through the optical link. Fractional stability better than 4×10~(-14) at 1 s averaging time was obtained, opening the way to ultrahigh resolution spectroscopy of molecular rovibrational transitions.
机译:我们在互联网光纤网络上报道了540公里的光学链路,用于通过互联网光纤网络进行可监视频率分布。相位噪声补偿链路在一个第二测量时间和30 000秒的频率下,在一个第二测量时间和2×10〜(-18)的完全带宽中的分数频率不稳定。这项工作是朝着可持续广域的无架光学频率分布和比较网络的重要一步。在相同的链路上同时进行时间转移,并导致绝对时间精度(250 ps)和长期定时稳定性(20 ps),其优于传统的卫星传输方法的一个大小。当前发展解决了多个用户在同一大都市区分布的问题。我们展示在线提取,第一次结果显示与传统链路相同的频率稳定性。我们还报告了一个应用于相干频率转移到中红外线的应用。我们展示了中红外激光到通过光学链路传送的近红外频率参考的频率稳定。在1秒的平均时间下比4×10〜(-14)优于4×10〜(-14),对分子振动过渡的超高分辨率光谱进行开启。

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