时滞与积分
原子钟
激光器
时间转移
物理
自由空间光通信
光通信
理论(学习稳定性)
航空航天工程
遥感
计算机科学
光学
卫星
天文
机器学习
地质学
工程类
作者
David R. Gozzard,Lewis Howard,Benjamin Dix-Matthews,Skevos Karpathakis,C. Gravestock,Sascha Schediwy
标识
DOI:10.1103/physrevlett.128.020801
摘要
A global network of optical atomic clocks will enable unprecedented measurement precision in fields including tests of fundamental physics, dark matter searches, geodesy, and navigation. Free-space laser links through the turbulent atmosphere are needed to fully exploit this global network, by enabling comparisons to airborne and spaceborne clocks. We demonstrate frequency transfer over a 2.4 km atmospheric link with turbulence comparable to that of a ground-to-space link, achieving a fractional frequency stability of 6.1×10^{-21} in 300 s of integration time. We also show that clock comparison between ground and low Earth orbit will be limited by the stability of the clocks themselves after only a few seconds of integration. This significantly advances the technologies needed to realize a global timescale network of optical atomic clocks.
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