Bao Junwei Lucas, Gagliardi Laura, Truhlar Donald G
Department of Chemistry, Chemical Theory Center, and Minnesota Supercomputing Institute , University of Minnesota , 207 Pleasant Street SE , Minneapolis , Minnesota 55455-0431 , United States.
J Phys Chem Lett. 2018 May 3;9(9):2353-2358. doi: 10.1021/acs.jpclett.8b00242. Epub 2018 Apr 24.
Self-interaction error (SIE) is considered to be one of the major sources of error in most approximate exchange-correlation functionals for Kohn-Sham density-functional theory (KS-DFT), and it is large with all local exchange-correlation functionals and with some hybrid functionals. In this work, we consider systems conventionally considered to be dominated by SIE. For these systems, we demonstrate that by using multiconfiguration pair-density functional theory (MC-PDFT), the error of a translated local density-functional approximation is significantly reduced (by a factor of 3) when using an MCSCF density and on-top density, as compared to using KS-DFT with the parent functional; the error in MC-PDFT with local on-top functionals is even lower than the error in some popular KS-DFT hybrid functionals. Density-functional theory, either in MC-PDFT form with local on-top functionals or in KS-DFT form with some functionals having 50% or more nonlocal exchange, has smaller errors for SIE-prone systems than does CASSCF, which has no SIE.
自相互作用误差(SIE)被认为是科恩-沙姆密度泛函理论(KS-DFT)中大多数近似交换关联泛函的主要误差来源之一,并且在所有局域交换关联泛函以及一些杂化泛函中该误差都很大。在这项工作中,我们考虑了传统上被认为受SIE主导的体系。对于这些体系,我们证明,与使用具有母体泛函的KS-DFT相比,当使用MCSCF密度和顶密度时,通过使用多组态对密度泛函理论(MC-PDFT),平移后的局域密度泛函近似的误差显著降低(降低了3倍);具有局域顶泛函的MC-PDFT中的误差甚至低于一些流行的KS-DFT杂化泛函中的误差。对于易受SIE影响的体系,无论是采用具有局域顶泛函的MC-PDFT形式的密度泛函理论,还是采用一些具有50%或更多非局域交换的泛函的KS-DFT形式的密度泛函理论,其误差都比没有SIE的完全活性空间自洽场方法(CASSCF)小。