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通信:基于精确交换空穴归一化的多参考体系的密度泛函理论模型。

Communication: Density functional theory model for multi-reference systems based on the exact-exchange hole normalization.

机构信息

Department of Chemistry and Center for Integrated Protein Science (CIPSM), University of Munich (LMU), D-81377 München, Germany.

出版信息

J Chem Phys. 2018 Mar 28;148(12):121101. doi: 10.1063/1.5025334.

Abstract

The correct description of multi-reference electronic ground states within Kohn-Sham density functional theory (DFT) requires an ensemble-state representation, employing fractionally occupied orbitals. However, the use of fractional orbital occupation leads to non-normalized exact-exchange holes, resulting in large fractional-spin errors for conventional approximative density functionals. In this communication, we present a simple approach to directly include the exact-exchange-hole normalization into DFT. Compared to conventional functionals, our model strongly improves the description for multi-reference systems, while preserving the accuracy in the single-reference case. We analyze the performance of our proposed method at the example of spin-averaged atoms and spin-restricted bond dissociation energy surfaces.

摘要

在 Kohn-Sham 密度泛函理论(DFT)中,正确描述多参考电子基态需要使用分数占据轨道的系综态表示。然而,分数轨道占据的使用会导致非归一化的精确交换空穴,从而导致传统近似密度泛函的分数自旋误差较大。在本通讯中,我们提出了一种简单的方法,可将精确交换空穴归一化直接纳入 DFT。与传统泛函相比,我们的模型在多参考体系的描述方面有了显著的改进,同时在单参考体系中保持了准确性。我们通过自旋平均原子和自旋限制键离解能表面的例子分析了我们所提出方法的性能。

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