Comparison of optimized effective potential with inverse Kohn–Sham method for Hartree–Fock exchange energy

Hideaki Takahashi
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Abstract

The inverse Kohn–Sham (inv-KS) density-functional theory for the electron density of the Hartree–Fock (HF) wave function was revisited within the context of the optimized effective potential (HF-OEP). First, we clarify the relationship between the inv-KS and the HF-OEP within the framework of the potential-functional theory. The similarities and the differences of the approaches are then discussed on the basis of their methodological details, which motivates comparisons of the wave function provided by each method. Next, the real-space grid implementations of the inv-KS and the HF-OEP are addressed for the comparisons. The total HF energies EHF[{φiinv-KS}] for the wave functions φiinv-KS on the effective potentials optimized by the inv-KS are computed for a set of small molecules. It is found that the mean absolute deviation (MAD) of EHF[{φiinv-KS}] from the HF energy is clearly smaller than the MAD of EHF[{φiOEP}], demonstrating that the inv-KS is advantageous in constructing the detailed structure of the exchange potential υx as compared with the HF-OEP. The inv-KS method is also applied to an ortho-benzyne radical known as a strongly correlated polyatomic molecule. It is revealed that the spin populations on the atomic sites computed by the UHF calculation can be faithfully reproduced by the wave functions on the inv-KS potential.
哈特里-福克交换能的优化有效势能与反 Kohn-Sham 法的比较
在优化有效势(HF-OEP)的背景下,我们重新审视了哈特里-福克(HF)波函数电子密度的反科恩-沙姆(inv-KS)密度函数理论。首先,我们在势函数理论框架内阐明了 inv-KS 与 HF-OEP 之间的关系。然后,在方法细节的基础上讨论了这两种方法的异同,并对每种方法提供的波函数进行了比较。接下来,针对 inv-KS 和 HF-OEP 的实空间网格实现进行比较。针对一组小分子,计算了 inv-KS 优化的有效势上波函数 φiinv-KS 的总高频能量 EHF[{φiinv-KS}] 。结果发现,EHF[{φiinv-KS}]与高频能量的平均绝对偏差(MAD)明显小于 EHF[{φiOEP}]的平均绝对偏差,这表明 inv-KS 在构建交换势 υx 的详细结构方面比高频-OEP 更有优势。inv-KS 方法还被应用于一种被称为强相关多原子分子的正苄基自由基。结果表明,超高频计算得出的原子位点上的自旋群可以通过 inv-KS 电位上的波函数忠实地再现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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