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A clock network for geodesy and fundamental science

机译:大地测量学和基础科学的时钟网络

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摘要

Leveraging the unrivalled performance of optical clocks as key tools for geo-science, for astronomy and for fundamental physics beyond the standard model requires comparing the frequency of distant optical clocks faithfully. Here, we report on the comparison and agreement of two strontium optical clocks at an uncertainty of 5 × 10−17 via a newly established phase-coherent frequency link connecting Paris and Braunschweig using 1,415 km of telecom fibre. The remote comparison is limited only by the instability and uncertainty of the strontium lattice clocks themselves, with negligible contributions from the optical frequency transfer. A fractional precision of 3 × 10−17 is reached after only 1,000 s averaging time, which is already 10 times better and more than four orders of magnitude faster than any previous long-distance clock comparison. The capability of performing high resolution international clock comparisons paves the way for a redefinition of the unit of time and an all-optical dissemination of the SI-second.
机译:利用光钟无与伦比的性能作为标准模型之外的地学,天文学和基础物理学的关键工具,需要忠实地比较远处的光钟的频率。在这里,我们通过一条新建立的相位相干频率链路(使用1,415千米/公里的巴黎光纤连接巴黎和不伦瑞克),报告了两个锶光钟在5×10 −17 不确定度下的比较和一致性。远程比较仅受锶晶格时钟本身的不稳定性和不确定性的限制,而光学频率传输的贡献可忽略不计。仅需1,000秒的平均时间,分数精度即可达到3×10 −17 ,这已经比以前的长距离时钟比较好了10倍,并且快了四个数量级。执行高分辨率国际时钟比较的能力为重新定义时间单位和全光传播SI秒铺平了道路。

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