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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Frequency shifts in cesium beam clocks induced by microwave leakages
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Frequency shifts in cesium beam clocks induced by microwave leakages

机译:微波泄漏引起铯束时钟的频移

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The anomalous sensitivity of an optically pumped cesium beam clock to microwave power and the unexpected frequency shifts observed are demonstrated to result from microwave leakages outside the arms of the Ramsey cavity. A new design of the cavity associated with a careful realisation provides very weak microwave leakages and negligible related frequency offsets. We have established a theoretical model that allows us to calculate the frequency shifts due to microwave field components propagating along the beam axis in regions which are free-field in an ideal Ramsey cavity. This results in first order Doppler effect shifts. The order of magnitude of the frequency shift can be predicted and agrees with the measured one when the amplitude of the leakage magnetic field is about a 1000 times smaller than the amplitude of the microwave interrogation field in the cavity.
机译:事实证明,光泵浦铯束时钟对微波功率的异常敏感性以及观察到的意外频率偏移是由于Ramsey腔臂外部的微波泄漏引起的。精心设计的腔体新设计提供了非常弱的微波泄漏和可忽略的相关频率偏移。我们已经建立了一个理论模型,该模型使我们能够计算由于在理想的Ramsey腔中的自由场区域中沿束轴传播的微波场分量而引起的频移。这导致一阶多普勒效应移动。当泄漏磁场的幅度比腔中微波询问场的幅度小约1000倍时,可以预测频移的量级并与测得的相符。

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