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用于单个低激发态的优化有效势方法。

Optimized effective potential method for individual low-lying excited states.

作者信息

Glushkov V N, Levy M

机构信息

Department of Physics, National University, per Nauchny 13, Dnepropetrovsk 49050, Ukraine.

出版信息

J Chem Phys. 2007 May 7;126(17):174106. doi: 10.1063/1.2733657.

Abstract

This paper presents an optimized effective potential (OEP) approach based on density functional theory (DFT) for individual excited states that implements a simple method of taking the necessary orthogonality constraints into account. The amended Kohn-Sham (KS) equations for orbitals of excited states having the same symmetry as the ground one are proposed. Using a variational principle with some orthogonality constraints, the OEP equations determining a local exchange potential for excited states are derived. Specifically, local potentials are derived whose KS determinants minimize the total energies and are simultaneously orthogonal to the determinants for states of lower energies. The parametrized form of an effective DFT potential expressed as a direct mapping of the external potential is used to simplify the OEP integral equations. A performance of the presented method is examined by exchange-only calculations of excited state energies for simple atoms and molecules.

摘要

本文提出了一种基于密度泛函理论(DFT)的针对单个激发态的优化有效势(OEP)方法,该方法实现了一种考虑必要正交性约束的简单方法。提出了与基态具有相同对称性的激发态轨道的修正科恩 - 沙姆(KS)方程。利用带有一些正交性约束的变分原理,推导了确定激发态局部交换势的OEP方程。具体而言,导出了局部势,其KS行列式使总能量最小化,并且同时与较低能量态的行列式正交。表示为外部势直接映射的有效DFT势的参数化形式用于简化OEP积分方程。通过对简单原子和分子的激发态能量进行仅交换计算来检验所提出方法的性能。

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