Kooi Derk Pieter, Gori-Giorgi Paola
Department of Chemistry & Pharmaceutical Sciences, Amsterdam Institute of Molecular and Life Sciences (AIMMS), Faculty of Science, Vrije Universiteit, De Boelelaan 1083, 1081HV Amsterdam, The Netherlands.
Faraday Discuss. 2020 Dec 4;224(0):145-165. doi: 10.1039/d0fd00056f.
We analyse a path to construct density functionals for the dispersion interaction energy from an expression in terms of the ground state densities and exchange-correlation holes of the isolated fragments. The expression is based on a constrained search formalism for a supramolecular wavefunction that is forced to leave the diagonal of the many-body density matrix of each fragment unchanged, and is exact for the interaction between one-electron densities. We discuss several aspects: the necessary features of a density functional approximation for the exchange-correlation holes of the monomers, the optimal choice of the one-electron basis (named "dispersals"), and the functional derivative with respect to monomer density variations.
我们分析了一条从孤立片段的基态密度和交换关联空穴的表达式构建色散相互作用能密度泛函的途径。该表达式基于一种对超分子波函数的约束搜索形式,该超分子波函数被迫使每个片段的多体密度矩阵的对角线保持不变,并且对于单电子密度之间的相互作用是精确的。我们讨论了几个方面:单体交换关联空穴的密度泛函近似的必要特征、单电子基(称为“弥散”)的最佳选择以及相对于单体密度变化的泛函导数。