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Effect of soil temperature on optical frequency transfer through unidirectional dense-wavelength-division-multiplexing fiber-optic links

机译:土壤温度对单向密集波分复用光纤链路光频传输的影响

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摘要

Results of optical frequency transfer over a carrier-grade dense-wavelength-division-multiplexing (DWDM) optical fiber network are presented. The relation between soil temperature changes on a buried optical fiber and frequency changes of an optical carrier through the fiber is modeled. Soil temperatures, measured at various depths by the Royal Netherlands Meteorology Institute (KNMI) are compared with observed frequency variations through this model. A comparison of a nine-day record of optical frequency measurements through the 2 × 298 km fiber link with soil temperature data shows qualitative agreement. A soil temperature model is used to predict the link stability over longer periods (days-months-years). We show that optical frequency dissemination is sufficiently stable to distribute and compare, e.g., rubidium frequency standards over standard DWDM optical fiber networks using unidirectional fibers.
机译:提出了通过载波级密集波分复用(DWDM)光纤网络进行光频率传输的结果。对埋入式光纤上的土壤温度变化与通过光纤的光学载体的频率变化之间的关系进行了建模。荷兰皇家气象学院(KNMI)在不同深度测量的土壤温度与通过此模型观察到的频率变化进行了比较。通过2×298 km光纤链路进行的为期9天的光频率测量记录与土壤温度数据的比较显示出定性的一致性。土壤温度模型用于预测较长时期(天-月-年-年)的链路稳定性。我们显示出光频率分布足够稳定以在使用单向光纤的标准DWDM光纤网络上分布和比较例如id频率标准。

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