Kumar Vignesh Balaji, Śmiga Szymon, Grabowski Ireneusz
Institute of Physics, Faculty of Physics, Astronomy, and Informatics, Nicolaus Copernicus University in Toruń, ul. Grudzia̧dzka 5, 87-100 Toruń, Poland.
J Phys Chem Lett. 2024 Oct 10;15(40):10219-10229. doi: 10.1021/acs.jpclett.4c01979. Epub 2024 Oct 2.
We have developed a critical methodology for the evaluation of the quality of hybrid exchange-correlation (XC) density functional approximations (DFAs) based on very fundamental quantities, i.e., Kohn-Sham (KS) XC potentials, self-consistent electron densities, first ionization potentials (IPs), and total energies. Since the XC potentials, the primary objects in the current study, are not directly accessible for the hybrids, we calculate them by inverting the KS electron densities. Utilizing this methodology, we tested 155 hybrid DFAs available in the LIBXC library using FCI and CCSD(T) methods as a reference. We have found that a group of functionals produces very decent XC potentials, mainly those with a large mixture of Hartree-Fock exchange. Moreover, the value of IP strongly depends on the XC potential quality. On the other hand, we show that the XC energy is dominated by functional-driven error, which in some cases leads to substantial errors in electronic densities. The study shows new directions for constructing more accurate XC functionals within the KS-DFT framework.
我们基于非常基本的量,即Kohn-Sham(KS)交换关联(XC)势、自洽电子密度、第一电离势(IP)和总能量,开发了一种用于评估混合交换关联(XC)密度泛函近似(DFA)质量的关键方法。由于当前研究的主要对象XC势对于混合泛函不可直接获取,我们通过反转KS电子密度来计算它们。利用这种方法,我们以FCI和CCSD(T)方法为参考,测试了LIBXC库中可用的155种混合DFA。我们发现一组泛函产生了非常合适的XC势,主要是那些具有大量Hartree-Fock交换混合的泛函。此外,IP的值强烈依赖于XC势的质量。另一方面,我们表明XC能量受泛函驱动误差的主导,这在某些情况下会导致电子密度出现较大误差。该研究为在KS-DFT框架内构建更精确的XC泛函指明了新方向。