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Laser Power Balance for Effective Multi-Step Photoionization of Degenerate Atoms

机译:激光功率平衡用于简并原子的有效多步光电离

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Optimization of laser power balance is studied numerically for effective multi-step photo-ionization of degenerate atoms. To date, a large number of similar studies have been executed for simple nondegenerate atoms and, therefore, the emphasis in this study is placed on investigating the role of the level degeneracy. It is concluded that a monotonically increasing J-value in the excitation ladder of levels is preferable, which is followed by some variations thereof. It should also be noted that a reasonably high ionization rate is attainable, in any case, provided that the Rabi-frequencies are optimized at the expense of the sizable laser powers required. The computer code employed here, which deals with the population evolution among numerous magnetic sublevels, has been tested against experiments in advance of the above numerical study.
机译:数值研究了激光功率平衡的优化,以实现退化原子的有效多步光电离。迄今为止,已经对简单的非简并原子进行了大量类似的研究,因此,本研究的重点放在调查能级简并的作用上。结论是,在水平的激励阶梯中单调增加的J值是优选的,其后是其一些变化。还应该指出,在任何情况下,只要以所需的相当大的激光功率为代价来优化拉比频率,就可以获得合理的高电离率。在上述数值研究之前,已针对实验对此处使用的计算机代码进行了测试,该计算机代码处理了众多磁性子级之间的种群演化。

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