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Multireference configuration interaction based electronic Floquet states for molecules in an intense radiation field: Theory and application to Li-2(+)

机译:基于多参考构型相互作用的强辐射场中分子的电子浮子态:理论和对Li-2(+)的应用

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A multireference configuration interaction (CI) method which includes single and double excitations based description of adiabatic Floquet states for the electronic structure of a molecule in an intense laser field is introduced. Using a variant of a recently introduced configuration state function (CSF) based Table-CI methodology, it is shown that the multiple states of several irreducible representations required for a good description of low-lying Floquet states can be obtained using modifications of computational molecular electronic structure techniques. In particular, formulas for all components of the transition dipole moment matrix elements within the CSF-based Table-CI method are derived and presented. Moreover, the flexibility of the recently introduced macroconfiguration description of model and external configuration spaces is shown to lead to multiple potential energy surfaces of sufficiently uniform quality to allow construction of useful Floquet states. The formalism and computer programs developed are demonstrated on Li-2(+) in a 0.9x10(12) W/cm(2) field. In analogy with Na-2(+), the 1,2 (2)Sigma(g)(+), 1,2 (2)Sigma(u)(+), 1 (2)Pi(g), and 1 (2)Pi(u) states are of relevance, although the pattern of couplings is shown to be more complex. A hitherto unnoticed metastable state, which correlates asymptotically with 2 (2)Sigma(u)(+), is described. (C) 2005 American institue of Physics.
机译:介绍了一种多参考配置相互作用(CI)方法,该方法包括基于单激发和双激发的强激光场中分子电子结构的绝热Floquet态描述。使用最近引入的基于配置状态函数(CSF)的Table-CI方法的一种变体,表明可以通过修改计算分子电子学来获得良好描述低洼Floquet状态所需的几种不可约表示的多重状态。结构技术。特别是,推导并给出了基于CSF的Table-CI方法中过渡偶极矩矩阵元素所有分量的公式。此外,最近介绍的模型和外部配置空间的宏配置描述的灵活性显示出具有足够均匀质量的多个势能表面,以允许构造有用的Floquet状态。 Li-2(+)在0.9x10(12)W / cm(2)场中展示了形式主义和开发的计算机程序。与Na-2(+)类似,1,2(2)Sigma(g)(+),1,2(2)Sigma(u)(+),1(2)Pi(g)和1 (2)Pi(u)状态是相关的,尽管耦合的模式显示为更复杂。描述了一个迄今未被注意到的亚稳态,它渐近地与2(2)Sigma(u)(+)相关。 (C)2005年美国物理研究所。

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