首页> 外文期刊>The Journal of Chemical Physics >Density-functional theory with effective potential expressed as a direct mapping of the external potential: Applications to atomization energies and ionization potentials
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Density-functional theory with effective potential expressed as a direct mapping of the external potential: Applications to atomization energies and ionization potentials

机译:具有有效电势的密度泛函理论表示为外部电势的直接映射:应用于雾化能量和电离电势

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In this paper the authors further develop and apply the direct-mapping density functional theory to calculations of the atomization energies and ionization potentials. Single-particle orbitals are determined by solving the Kohn-Sham [Phys. Rev. A. 140, 1133 (1965)] equations with a local effective potential expressed in terms of the external potential. A two-parametric form of the effective potential for molecules is proposed and equations for optimization of the parameters are derived using the exchange-only approximation. Orbital-dependent correlation functional is derived from the second-order perturbation theory in its Moller-Plesset-type zeroth-order approximation based on the Kohn-Sham orbitals and orbital energies. The total atomization energies and ionization potentials computed with the second-order perturbation theory were found to be in agreement with experimental values and benchmark results obtained with ab initio wave mechanics methods. (c) 2006 American Institute of Physics.
机译:在本文中,作者进一步发展了直接映射密度泛函理论并将其应用于雾化能和电离势的计算。单粒子轨道通过求解Kohn-Sham [Phys。 Rev. A. 140,1133(1965)]等式,其局部有效电位用外部电位表示。提出了分子有效势的两参数形式,并使用仅交换近似值导出了用于优化参数的方程式。依赖于轨道的相关函数是基于二阶微扰理论在基于Kohn-Sham轨道和轨道能量的Moller-Plesset型零阶近似中得出的。发现用二阶扰动理论计算出的总雾化能和电离势与实验值和从头算波力学方法获得的基准结果一致。 (c)2006年美国物理研究所。

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