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Optimization of the experimental parameters of cesium CPT system

机译:铯CPT系统实验参数的优化

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Based on a A-type three-level system consists of cesium (Cs) 6S1/2 (Fg = 3) and 6S_(1/2) (Fg = 4) long-lived ground states and 6P3/2 (Fe = 4) excited state, we have experimentally measured and theoretically analyzed the characters of coherent population trapping (CPT) resonances in Cs vapor cells with different partial pressure of neon (Ne) as buffer gas around room temperature. The impact of some experimental parameters, such as the relative intensity ratio between two phase-locked laser beams, the laser intensity, with or without buffer gas and the partial pressure of Ne, the temperature and the longitudinal magnetic field, on the CPT resonance was studied in details. With the optimized parameters, we got typical CPT signal with the full-width half-maximum (FWHM) linewidth as narrow as ~181 Hz in a Cs vapor cell filled with 30 Torr of Ne as buffer gas.
机译:基于A型三能级系统,由铯(Cs)6S1 / 2(Fg = 3)和6S_(1/2)(Fg = 4)长寿命基态和6P3 / 2(Fe = 4)组成在激发态下,我们通过实验测量并从理论上分析了室温下周围有不同氖气(Ne)分压的Cs蒸气电池中相干粒子阱俘获(CPT)共振的特征。一些实验参数,如两个锁相激光束之间的相对强度比,有无缓冲气体和Ne的分压,温度和纵向磁场的激光强度对CPT共振的影响是详细研究。通过优化的参数,我们得到了一个典型的CPT信号,该信号在填充有30 Torr的Ne作为缓冲气体的Cs蒸气室中具有全宽半最大(FWHM)线宽窄至〜181 Hz。

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