El-Samman Amer M, Ospadov Egor, Staroverov Viktor N
Department of Chemistry, The University of Western Ontario, London, Ontario N6A 5B7, Canada.
J Chem Theory Comput. 2020 Nov 10;16(11):6886-6893. doi: 10.1021/acs.jctc.0c00806. Epub 2020 Oct 19.
The first vertical ionization energy of an atom or molecule is encoded in the rate of exponential decay of the exact natural orbitals. For natural orbitals represented in terms of Gaussian basis functions, this property does not hold even approximately. We show that it is nevertheless possible to deduce the first ionization energy from the long-range behavior of Gaussian-basis-set wave functions by evaluating the asymptotic limit of a quantity called the average local electron energy (ALEE), provided that the most diffuse functions of the basis set have a suitable shape and location. The ALEE method exposes subtle qualitative differences between seemingly analogous Gaussian basis sets and complements the extended Koopmans theorem by being robust in situations where the one-electron reduced density matrix is ill-conditioned.
原子或分子的第一垂直电离能编码在精确自然轨道的指数衰减率中。对于用高斯基函数表示的自然轨道,即使近似地,这个性质也不成立。我们表明,通过评估一个称为平均局部电子能量(ALEE)的量的渐近极限,仍然有可能从高斯基组波函数的长程行为中推导出第一电离能,前提是基组中最弥散的函数具有合适的形状和位置。ALEE方法揭示了看似类似的高斯基组之间微妙的定性差异,并通过在单电子约化密度矩阵条件不佳的情况下具有稳健性,对扩展库普曼斯定理起到补充作用。