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Theory of resonantly enhanced multiphoton processes in molecules

机译:分子共振增强多光子过程的理论

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摘要

In this paper we formulate a theory for the analysis of resonant enhanced multiphoton ionization processes in molecules. Our approach consists of viewing the (n+m) photon ionization process from an isotropic initial state as m‐photon ionization out of an oriented, excited state. The orientation in this resonant state, which is reached by n‐photon excitation from the initial state, is nonisotropic, and is characteristic of this absorption process. The ionization simply probes this anisotropic population. The calculation of the REMPI process thus consists of determining the anisotropy created in the resonant state and then coupling this anisotropic population to ionization out of it. While the former is accomplished by the solution of appropriate density matrix equations, the latter is done by coupling these density matrix elements to angle‐resolved ionization rates out of this state. An attractive feature of this approach is that the influence of saturation effects, and other interactions, such as collisions, on the photoelectron properties is easily understood and incorporated. General expressions are derived for photoelectron angular distributions. Based on these, several properties of the angular distributions that follow purely on symmetry considerations are discussed. One of the new features that emerge out of this work is the saturation induced anisotropy in REMPI. In this effect higher order contributions to the angular distributions appear since saturation influences different ionization channels differently thereby creating an additional anisotropy in the excited state.
机译:在本文中,我们为分子中共振增强的多光子电离过程的分析建立了理论。我们的方法包括从各向同性的初始状态(m +光子电离)从取向激发态中观察(n + m)光子电离过程。从初始状态通过n光子激发达到的共振状态下的取向是各向同性的,并且是该吸收过程的特征。电离只是探测这个各向异性的种群。因此,REMPI过程的计算包括确定在共振状态下产生的各向异性,然后将该各向异性总体耦合到其中的电离。前者是通过适当密度矩阵方程的解来完成的,而后者是通过将这些密度矩阵元素与该状态之外的角度分辨的电离速率耦合来完成的。该方法的一个吸引人的特征是,可以容易地理解和结合饱和效应和其他相互作用(例如碰撞)对光电子性质的影响。推导了光电子角分布的一般表达式。基于这些,讨论了纯粹出于对称性考虑而遵循的角度分布的几种属性。这项工作中出现的新功能之一是REMPI中的饱和诱导各向异性。在这种效果下,由于饱和度不同地影响不同的电离通道,因此在角度上出现了更高阶的贡献,从而在激发态下产生了额外的各向异性。

著录项

  • 作者

    S. N. Dixit; V. McKoy;

  • 作者单位
  • 年度 1985
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"english","id":9}
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