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首页> 外文期刊>Journal of the Korean Physical Society >Research on the influence of alkali polarization on an all-optical atomic spin magnetometer based on hybrid pumping potassium and rubidium
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Research on the influence of alkali polarization on an all-optical atomic spin magnetometer based on hybrid pumping potassium and rubidium

机译:碱极化对钾泵和hybrid泵浦全光原子自旋磁强计影响的研究

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摘要

An all-optical atomic spin magnetometer using a hybrid cell of K and Rb atoms is demonstrated in this paper. Via deriving and solving the Bloch equations, we established the models for the polarization rate of Rb and the magnetometer's output signal, respectively. In order to achieve the maximum sensitivity, we carried out research on the influence of the pump power on the polarization rate and magnetometer's output signal. The magnetometer's sensitivity was found to be proportional to the polarization rate of Rb, which was confined by the pump power. In a certain context, theoretical predictions indicated that the larger the pump power was, the higher magnetometer's sensitivity that could be realized. However, the theoretical estimate deviated from the experimental results. An analysis of the errors between the actual value and the theoretical value showed that the different molar ratio between the two species of alkali-metal atoms was the primary reason causing the deviation. By comparing the experimental measurement result with simulation result, we found the difference in the molar ratio to be approximate 4 times. After various parameters had been optimized, a sensitivity of 18 fT/Hz(1/2) was achieved by analyzing the signal-to-noise ratio.
机译:本文展示了一种使用K和Rb原子混合电池的全光学原子自旋磁力仪。通过推导和求解Bloch方程,我们分别建立了Rb极化率和磁力计输出信号的模型。为了获得最大的灵敏度,我们对泵浦功率对极化率和磁力计输出信号的影响进行了研究。发现磁力计的灵敏度与Rb的极化率成正比,Rb的极化率受泵浦功率的限制。在某种情况下,理论预测表明,泵浦功率越大,可实现的磁力计灵敏度就越高。但是,理论估计与实验结果有所不同。对实际值和理论值之间的误差的分析表明,两种碱金属原子之间的摩尔比不同是造成偏差的主要原因。通过将实验测量结果与模拟结果进行比较,我们发现摩尔比的差异约为4倍。在对各种参数进行优化之后,通过分析信噪比,获得了18 fT / Hz(1/2)的灵敏度。

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