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Time-dependent multiconfiguration theory for describing molecular dynamics in diatomic-like molecules

机译:基于时间的多构型理论,用于描述双原子分子中的分子动力学

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We extend the multiconfiguration time-dependent Hartree-Fock (MCTDHF) theory, which is originally developed for the investigation of electronic dynamics in atoms and molecules within the clamped nuclear model, for describing molecular dynamics in diatomic-like molecular systems which are composed of electrons, protons, and two heavy nuclei such as CH_3OH, C_2H_2, C_2H_4, and H_5O_2~+. A novel representation of the molecular (electrons and nuclei) wave function to describe the electronic and nuclear quantal dynamics of molecules in an intense laser field is proposed, and the explicit coupled equations of motion (EOMs) for electron spin-orbitals, proton spin-orbitals, and CI-vectors are formulated. The CI-vectors are introduced to describe the quantal motion of the internuclear distance between two heavy nuclei. The derivation of the EOMs is done in two steps. First, the distance between the two heavy nuclei R is treated classically, i.e., electro-protonic dynamics within the clamped nuclear model, and then, the distance R is treated quantum mechanically to describe non-Born–Oppenheimer molecular dynamics. The properties of the EOMs are discussed for the application of the present theory to clarify the mechanism of intramolecular hydrogen (proton) migration processes within hydrocarbon molecules competing with the ionization and the fragmentation processes in intense laser fields.
机译:我们扩展了多配置时变哈特里克·福克(MCTDHF)理论,该理论最初是为研究受钳制核模型内原子和分子中的电子动力学而开发的,用于描述由电子组成的双原子样分子系统中的分子动力学。 ,质子和两个重核,例如CH_3OH,C_2H_2,C_2H_4和H_5O_2〜+。提出了一种新颖的分子(电子和核)波函数表示形式,用于描述强激光场中分子的电子和核量子动力学,以及电子自旋轨道,质子自旋运动的显式耦合运动方程(EOM)。制定轨道和CI向量。引入CI向量来描述两个重核之间的核间距离的量子运动。 EOM的推导分两个步骤完成。首先,经典地处理两个重核R之间的距离,即,在固定核模型中的电子质子动力学,然后,用量子力学方法处理距离R,以描述非Born-Oppenheimer分子动力学。讨论了EOMs的特性,以应用本理论阐明分子内氢(质子)在烃分子中与强激光场中的电离和裂解过程竞争的迁移机理。

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