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双原子模型化学II. 微扰校正

Geminal model chemistry II. Perturbative corrections.

作者信息

Rassolov Vitaly A, Xu Feng, Garashchuk Sophya

机构信息

Department of Chemistry and Biochemistry, University of South Carolina, Columbia, South Carolina 29208, USA.

出版信息

J Chem Phys. 2004 Jun 8;120(22):10385-94. doi: 10.1063/1.1738110.

Abstract

We introduce and investigate a chemical model based on perturbative corrections to the product of singlet-type strongly orthogonal geminals wave function. Two specific points are addressed (i) Overall chemical accuracy of such a model with perturbative corrections at a leading order; (ii) Quality of strong orthogonality approximation of geminals in diverse chemical systems. We use the Epstein-Nesbet form of perturbation theory and show that its known shortcomings disappear when it is used with the reference Hamiltonian based on strongly orthogonal geminals. Application of this model to various chemical systems reveals that strongly orthogonal geminals are well suited for chemical models, with dispersion interactions between the geminals being the dominant effect missing in the reference wave functions.

摘要

我们引入并研究了一种基于对单重态型强正交双电子波函数乘积进行微扰修正的化学模型。讨论了两个具体问题:(i)这种具有一阶微扰修正的模型的整体化学精度;(ii)在不同化学体系中双电子强正交近似的质量。我们使用微扰理论的爱泼斯坦 - 内斯比特形式,并表明当它与基于强正交双电子的参考哈密顿量一起使用时,其已知缺点会消失。将该模型应用于各种化学体系表明,强正交双电子非常适合化学模型,双电子之间的色散相互作用是参考波函数中缺失的主要效应。

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