首页> 外文期刊>The Journal of Chemical Physics >Time-dependent multiconfiguration theory for electronic dynamics of molecules in intense laser fields: A description in terms of numerical orbital functions
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Time-dependent multiconfiguration theory for electronic dynamics of molecules in intense laser fields: A description in terms of numerical orbital functions

机译:时间相关的多配置理论,用于在强激光场中分子的电子动力学:以数字轨道函数的形式描述

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摘要

The equations of motion (EOMs) for spin orbitals in the coordinate representation are derived within the framework of the time-dependent multiconfiguration theory developed for electronic dynamics of molecules in intense laser fields. We then tailor the EOMs for diatomic (or linear) molecules to apply the theory to the electronic dynamics of a hydrogen molecule in an intense, near-infrared laser field. Numerical results are presented to demonstrate that the time-dependent numerical multiconfiguration wave function is able to describe the correlated electron motions as well as the ionization processes of a molecule in intense laser fields. (C) 2008 American Institute of Physics.
机译:坐标表示中自旋轨道的运动方程(EOM)是在时变多配置理论的框架内得出的,该理论是针对强激光场中分子的电子动力学而开发的。然后,我们为双原子(或线性)分子量身定制EOM,以将该理论应用于在强近红外激光场中氢分子的电子动力学。数值结果表明,时变数值多重配置波函数能够描述相关的电子运动以及强激光场中分子的电离过程。 (C)2008美国物理研究所。

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