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芯激发态的自洽场计算。

Self-consistent-field calculations of core excited states.

作者信息

Besley Nicholas A, Gilbert Andrew T B, Gill Peter M W

机构信息

School of Chemistry, University of Nottingham, Nottingham NG7 2RD, England.

出版信息

J Chem Phys. 2009 Mar 28;130(12):124308. doi: 10.1063/1.3092928.

Abstract

The accuracy of core excitation energies and core electron binding energies computed within a Delta self-consistent-field framework is assessed. The variational collapse of the core excited state is prevented by maintaining a singly occupied core orbital using an overlap criterion called the maximum overlap method. When applied to a wide range of small organic molecules, the resulting core excitation energies are not systematically underestimated as observed in time-dependent density functional theory and agree well with experiment. The accuracy of this approach for core excited states is illustrated by the calculation of the pre-edge features in x-ray absorption spectra of plastocyanin, which shows that accurate results can be achieved with Delta self-consistent-field calculations when used in conjunction with uncontracted basis functions.

摘要

评估了在Δ自洽场框架内计算的芯激发能和芯电子结合能的准确性。通过使用称为最大重叠法的重叠标准来维持单占据的芯轨道,防止了芯激发态的变分坍缩。当应用于各种小有机分子时,所得的芯激发能不会像在含时密度泛函理论中那样被系统地低估,并且与实验结果吻合良好。通过计算质体蓝素的X射线吸收光谱中的前缘特征,说明了这种用于芯激发态方法的准确性,这表明当与未收缩基函数结合使用时,Δ自洽场计算可以得到准确的结果。

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