脉冲辐射驱动下二能级原子的行为

V. Chaltykyan, G. Grigorian, Y. Pashayan
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引用次数: 0

摘要

研究了两能级原子与非单色辐射脉冲相互作用的共振近似和非共振近似。利用时变微扰理论,得到了原子跃迁概率的解析表达式。它显示了如何根据场强的值,以所需的精度获得原子的激发概率。结果表明,原子的上能级居群表现出共振近似中不存在的振荡。研究表明,非单色辐射的吸收概率和偶极矩谱受非线性相互作用过程中各谱元之间的干扰所支配。当脉冲谱中不存在共振成分时,原子也可以被激发。
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Behavior of two-level atom driven by pulsed radiation
The problem of a two-level atom interacting with a nonmonochromatic radiation pulse is studied both with and without the resonant approximation. Using the time-dependent perturbation theory, the analytical expressions for transition probability of the atom are obtained. It is shown how, depending on the value of the field strength, the atom's excitation probability can be obtained with the needed accuracy. It is shown that the upper level population of the atom exhibits oscillations which are absent in the resonant approximation. It is shown that absorption probability and dipole moment spectrum are governed by interference between the spectral components of a non- monochromatic radiation involved in nonlinear interaction process. Spectral distribution symmetry with respect to the resonance frequency being destroyed, the atom can be excited even if there is no resonant component in the pulse spectrum.
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