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Optimizations of spin-exchange relaxation-free magnetometer based on potassium and rubidium hybrid optical pumping

机译:基于钾和hybrid混合光泵浦的自旋交换无弛豫磁力计的优化

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摘要

The hybrid optical pumping atomic magnetometers have not realized its theoretical sensitivity, the optimization is critical for optimal performance. The optimizations proposed in this paper are suitable for hybrid optical pumping atomic magnetometer, which contains two alkali species. To optimize the parameters, the dynamic equations of spin evolution with two alkali species were solved, whose steady-state solution is used to optimize the parameters. The demand of the power of the pump beam is large for hybrid optical pumping. Moreover, the sensitivity of the hybrid optical pumping magnetometer increases with the increase of the power density of the pump beam. The density ratio between the two alkali species is especially important for hybrid optical pumping magnetometer. A simple expression for optimizing the density ratio is proposed in this paper, which can help to determine the mole faction of the alkali atoms in fabricating the hybrid cell before the cell is sealed. The spin-exchange rate between the two alkali species is proportional to the saturated density of the alkali vapor, which is highly dependent on the temperature of the cell. Consequently, the sensitivity of the hybrid optical pumping magnetometer is dependent on the temperature of the cell. We proposed the thermal optimization of the hybrid cell for a hybrid optical pumping magnetometer, which can improve the sensitivity especially when the power of the pump beam is low. With these optimizations, a sensitivity of approximately 5 fT/Hz is achieved with gradiometer arrangement.
机译:混合光泵浦原子磁力计尚未实现其理论灵敏度,优化对于优化性能至关重要。本文提出的优化方法适用于包含两种碱物质的混合光泵浦原子磁力计。为了优化参数,求解了具有两个碱物种的自旋演化的动力学方程,并使用稳态解来优化参数。对于混合光泵浦,泵浦光束功率的需求很大。而且,混合光泵浦磁力计的灵敏度随着泵浦光束功率密度的增加而增加。两种碱物质之间的密度比对于混合光泵浦磁力计特别重要。本文提出了一种优化密度比的简单表达式,该表达式可以帮助确定在密封电池之前制造混合电池时碱原子的摩尔分布。两种碱物质之间的自旋交换速率与碱蒸气的饱和密度成正比,而碱蒸气的饱和密度与电池的温度高度相关。因此,混合型光泵磁力计的灵敏度取决于电池的温度。我们提出了一种用于混合光泵浦磁力计的混合电池的热优化方法,可以提高灵敏度,尤其是在抽运光束的功率较低时。通过这些优化,使用梯度计装置可获得约5 fT / Hz的灵敏度。

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