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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Controlling the microwave amplitude in optically pumped cesium beam frequency standards
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Controlling the microwave amplitude in optically pumped cesium beam frequency standards

机译:在光泵浦铯束频率标准中控制微波振幅

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摘要

Assuming square wave frequency modulation, the response, versus the amplitude of the microwave field, of an optically pumped cesium beam tube is considered. The properties of the first maximum of this response are analyzed. The effect of the neighboring lines is taken into consideration, and a model of the profile of the microwave field in each interaction region is validated. A symmetry property of the response considered is pointed out. It enables us to implement a feedback control of the microwave amplitude with a large depth of the amplitude modulation. Residual frequency offsets that may occur as a consequence of a spurious amplitude modulation correlated with the frequency modulation are assessed. And, with a cavity designed such that /spl sigma/=/spl pi/ between the two oscillatory fields, it also is possible to measure the microwave amplitude at the first maximum of the sole contribution of the reference atomic line.
机译:假设方波频率调制,考虑了光泵浦铯束管的响应与微波场的振幅的关系。分析该响应的第一最大值的属性。考虑到相邻线的影响,并验证了每个相互作用区域中微波场分布的模型。指出了所考虑响应的对称性。它使我们能够对振幅大的深度的微波振幅进行反馈控制。评估由于与频率调制相关的寄生幅度调制而可能出现的残留频率偏移。并且,利用被设计为在两个振荡场之间为/ spl sigma / = / spl pi /的腔,还可以在参考原子线的唯一贡献的第一最大值处测量微波振幅。

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