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Power dependence of distributed cavity phase-induced frequency biases in atomic fountain frequency standards

机译:原子喷泉频率标准中的分布式腔相感应频率偏置的功率相关性

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摘要

We discuss the implications of using high-power microwave tests in a fountain frequency standard to measure the frequency bias resulting from distributed cavity-phase shifts. We develop a theory which shows that the frequency bias from distributed cavity phase depends on the amplitude of the microwave field within the cavity. The dependence leads to the conclusion that the frequency bias associated with the distributed cavity phase is typically both misestimated and counted twice within the error budget of fountain frequency standards.
机译:我们讨论了在喷泉频率标准中使用大功率微波测试来测量由分布式腔相移引起的频率偏差的含义。我们开发了一种理论,该理论表明来自分布式腔相位的频率偏差取决于腔内微波场的幅度。这种依赖性导致这样的结论,即与分布腔相位相关的频率偏差通常在喷泉频率标准的误差预算内被错误估计和计数两次。

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