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A unified scheme for ab initio molecular orbital theory and path integral molecular dynamics

机译:从头计算分子轨道理论和路径积分分子动力学的统一方案

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We present a general approach for accurate calculation of chemical substances which treats both nuclei and electrons quantum mechanically, adopting ab initio molecular orbital theory for the electronic structure and path integral molecular dynamics for the nuclei. The present approach enables the evaluation of physical quantities dependent on the nuclear configuration as well as the electronic structure, within the framework of Born-Oppenheimer adiabatic approximation. As an application, we give the path integral formulation of electric response properties-dipole moment and polarizability, which characterize the changes both in electronic structure and nuclear configuration at a given temperature when uniform electrostatic field is present. We also demonstrate the calculation of a water molecule using the present approach and the result of temperature and isotope effects is discussed. (C) 2001 American Institute of Physics. [References: 73]
机译:我们提供了一种精确计算化学物质的通用方法,该化学物质同时对原子核和电子进行机械处理,采用从头算分子轨道理论进行电子结构和原子核的路径整体分子动力学。本方法能够在Born-Oppenheimer绝热近似的框架内评估取决于核构型以及电子结构的物理量。作为应用,我们给出了电响应特性的偶极矩和极化率的路径积分公式,该公式描述了在给定温度下存在均匀静电场时电子结构和核构型的变化。我们还演示了使用本方法计算水分子的过程,并讨论了温度和同位素效应的结果。 (C)2001美国物理研究所。 [参考:73]

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