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Selective optical pumping process in Doppler-broadened atoms

机译:多普勒增宽原子中的选择性光泵浦过程

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By solving the optical Bloch equations with the rate-equation approximation, we calculate the time dependence of the magnetic sublevel populations of Doppler-broadened atoms. With an increase of the left-circularly polarized pump intensity, the population fraction of a certain sublevel of the excited state almost reaches 0.3, resulting in anisotropy in the excited state, which is important to the optical filter based on circular birefringence and dichroism. Furthermore, numerical results show that the real saturation pump intensity for the moving atoms is much larger than that for the resting atoms.
机译:通过用速率方程近似求解光学Bloch方程,我们计算了多普勒扩展原子的磁性子能级种群的时间依赖性。随着左旋圆偏振泵浦强度的增加,激发态的某个子水平的人口分数几乎达到0.3,导致激发态的各向异性,这对于基于圆双折射和二向色性的光学滤波器很重要。此外,数值结果表明,运动原子的实际饱和泵浦强度远大于静止原子的饱和泵浦强度。

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