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A Quantum-Based Microwave Magnetic Field Sensor

机译:基于量子的微波磁场传感器

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摘要

In this paper, a quantum-based method for measuring the microwave magnetic field in free space is presented by exploring atomic Rabi resonance in the clock transition of 133Cs. A compact cesium glass cell serving as the microwave magnetic field sensing head was used to measure the spatial distribution of microwave radiation from an open-ended waveguide antenna. The measured microwave magnetic field was not restricted by other microwave devices. The longitudinal distribution of the magnetic field was measured. The experimental results measured by the sensor were in agreement with the simulation. In addition, a slightly electromagnetic perturbation caused by the glass cell was investigated through simulation calculations.
机译:通过探索 133 Cs的时钟跃迁中的原子拉比共振,提出了一种基于量子的测量自由空间微波磁场的方法。使用紧凑的铯玻璃电池作为微波磁场感测头,以测量来自开放式波导天线的微波辐射的空间分布。所测量的微波磁场不受其他微波设备的限制。测量磁场的纵向分布。传感器测得的实验结果与仿真结果吻合。另外,通过模拟计算研究了由玻璃电池引起的轻微电磁干扰。

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