Nonlinear resonances sign reversal and longitudinal alignment on the resonant levels of 133Cs thin-layer vapour

G. Todorov, V. Polischuk, A. Krasteva, S. Cartaleva, A. Sargsyan, T. Vartanyan
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Abstract

The fluorescence and non-linear absorption spectra of Cs133 vapour in an extremely thin cell were calculated by using the perturbation theory with respect to the pumping field intensity. The problem of the atoms’ non-linear polarization was solved for arbitrary values of the total momenta of the resonance levels pumped by a linearly-polarised laser field. It was demonstrated that the spontaneous emission from the upper level affects the amplitude and sign of the lower level longitudinal alignment and results in a change of the amplitude and sign of the non-linear absorption resonance at the closed transition. The comparison of the numerical calculations with the experimental data for the D2 line of 133Cs shows a very good agreement.
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133Cs薄层蒸汽共振能级上的非线性共振符号反转和纵向对准
利用微扰理论计算了极薄电池中Cs133蒸气的荧光光谱和非线性吸收光谱与抽运场强度的关系。在线性偏振激光场抽运的共振能级的总动量为任意值时,解决了原子的非线性极化问题。结果表明,上层自发辐射影响下层纵向对准的幅度和符号,导致闭合跃迁处非线性吸收共振的幅度和符号发生变化。对133c的D2线进行了数值计算与实验数据的比较,得到了很好的吻合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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