Moore Conrad C, Staroverov Viktor N
Department of Chemistry, The University of Western Ontario, London, Ontario N6A 5B7, Canada.
J Phys Chem A. 2024 Jul 25;128(29):6019-6025. doi: 10.1021/acs.jpca.4c02712. Epub 2024 Jul 10.
Although electron densities are always continuous, other ingredients of density-functional approximations can be sharply discontinuous at isolated points. In particular, the positive-definite, Weizsäcker, and Pauli kinetic energy densities expressed in terms of Slater-type orbitals all have discontinuities at the positions of the atomic nuclei in molecules. The first two of those quantities are similarly discontinuous even in the basis-set limit. These striking features are not as widely recognized as they deserve to be. We show in detail how discontinuities of kinetic energy densities arise from asymmetric electron-nucleus cusps of molecular wave functions and point out instances of their significance in electronic structure theory.
尽管电子密度总是连续的,但密度泛函近似的其他成分在孤立点处可能会有急剧的不连续性。特别是,用斯莱特型轨道表示的正定、魏茨泽克和泡利动能密度在分子中原子核的位置处都有不连续性。即使在基组极限下,前两个量也同样是不连续的。这些显著特征没有得到应有的广泛认可。我们详细展示了动能密度的不连续性是如何由分子波函数的不对称电子-核尖点产生的,并指出了它们在电子结构理论中的重要意义。