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Experimental and numerical study of the microwave field distribution in a compact magnetron-type microwave cavity

机译:紧凑型磁控型微波腔微波场分布的实验性和数值研究

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The homogeneity of the microwave magnetic field distribution inside a microwave cavity resonator is of crucial importance for the performance of high-stability vapor-cell atomic clocks, in particular when operating in the pulsed regime. Here we report on measurements and numerical simulations of the microwave field distribution inside a highly compact magnetron-type microwave cavity. A microwave field imaging technique is used to measure the microwave field distribution over the cavity volume occupied by the Rb vapor cell. Over the measured volume, we find a variation in the microwave field's z-component (relevant for the clock performance) of 20%, with good agreement between experiments and simulations. The presented results are relevant for assessing clock performance limitations arising from the cavity studied, and give design guidelines for future improved cavities of similar type.
机译:微波腔谐振器内部的微波磁场分布的均匀性对于高稳定性蒸汽 - 细胞原子时钟的性能至关重要,特别是在脉冲制度中操作时的性能。在这里,我们报告了高度紧凑的磁控型微波腔内的微波场分布的测量和数值模拟。微波场成像技术用于测量RB蒸气细胞占据的腔体积上的微波场分布。通过测量的体积,我们在微波炉领域的Z组件(与时钟性能相关)的变化,实验与模拟之间的一致性良好。所提出的结果与评估所研究的腔间产生的时钟性能限制相关,并为未来的类似类型的改进腔提供设计指南。

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