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Imaging Microwave and DC Magnetic Fields in a Vapor-Cell Rb Atomic Clock

机译:气相电池Rb原子钟中的微波和直流磁场成像

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摘要

We report on the experimental measurement of the dc and microwave magnetic field distributions inside a recently developed compact magnetron-type microwave cavity mounted inside the physics package of a high-performance vapor-cell atomic frequency standard. Images of the microwave field distribution with sub-100- lateral spatial resolution are obtained by pulsed optical-microwave Rabi measurements, using the Rb atoms inside the cell as field probes and detecting with a CCD camera. Asymmetries observed in the microwave field images can be attributed to the precise practical realization of the cavity and the Rb vapor cell. Similar spatially resolved images of the dc magnetic field distribution are obtained by Ramsey-type measurements. The relaxation time in the Rb vapor cell is found to be position dependent and correlates with the gradient of the dc magnetic field. The presented method is highly useful for experimental characterization of dc magnetic fields and resonant microwave structures, for atomic clocks or other atom-based sensors and instrumentation.
机译:我们报告了在最近开发的紧凑型磁控管型微波腔体内的直流和微波磁场分布的实验测量结果,该腔安装在高性能蒸汽电池原子频率标准的物理包装内。通过使用单元内的Rb原子作为场探针并使用CCD摄像机进行检测,通过脉冲光学微波Rabi测量获得具有低于100个横向空间分辨率的微波场分布图像。微波场图像中观察到的不对称性可归因于腔体和Rb蒸气室的精确实际实现。直流磁场分布的类似空间分辨图像是通过拉姆齐型测量获得的。发现Rb蒸气池中的弛豫时间与位置有关,并且与dc磁场的梯度相关。提出的方法对于直流磁场和谐振微波结构的实验表征,原子钟或其他基于原子的传感器和仪器非常有用。

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