Vydrov Oleg A, Scuseria Gustavo E
Department of Chemistry, Rice University, Houston, Texas 77005, USA.
J Chem Phys. 2005 May 8;122(18):184107. doi: 10.1063/1.1897378.
Using a self-consistent implementation of the Perdew-Zunger self-interaction corrected (PZ-SIC) density-functional theory, we have calculated ionization potentials (IP) and electron affinities (EA) of first- and second-row atoms and a set of small molecules. Several exchange-correlation functionals were tested. IPs and EAs were obtained by two methods: as the difference in self-consistent field (SCF) energies of neutrals and ions (deltaSCF) and as negatives of highest-occupied orbital energies. We found that, except for local spin-density approximation, PZ-SIC worsens DeltaSCF IPs and EAs. On the other hand, PZ-SIC brings orbital eigenvalues into much better agreement with electron removal energies. The Perdew-Zunger SIC seems to over-correct many-electron systems; for molecules it performs worse than for atoms. We also discuss several common approximations to PZ-SIC such as spherical averaging of orbital densities in atoms.
使用Perdew-Zunger自相互作用校正(PZ-SIC)密度泛函理论的自洽实现,我们计算了第一和第二周期原子以及一组小分子的电离势(IP)和电子亲和能(EA)。测试了几种交换关联泛函。通过两种方法获得IP和EA:作为中性原子和离子的自洽场(SCF)能量之差(deltaSCF)以及作为最高占据轨道能量的负值。我们发现,除了局域自旋密度近似外,PZ-SIC会使DeltaSCF IP和EA变差。另一方面,PZ-SIC使轨道本征值与电子去除能的一致性更好。Perdew-Zunger SIC似乎对多电子系统过度校正;对于分子,它的表现比原子更差。我们还讨论了PZ-SIC的几种常见近似,例如原子中轨道密度的球平均。