Developing orbital-dependent corrections for the non-additive kinetic energy in subsystem density functional theory

L Larissa Sophie Eitelhuber (Institut für Chemie und Biochemie, Freie Universität Berlin , Arnimallee 22, 14195 Berlin,) D Denis G. Artiukhin (Institut für Chemie und Biochemie, Freie Universität Berlin , Arnimallee 22, 14195 Berlin,)

Abstract

We present a novel route to constructing cost-efficient semi-empirical approximations for the non-additive kinetic energy in subsystem density functional theory. The developed methodology is based on the use of Slater determinants composed of non-orthogonal Kohn–Sham-like orbitals for the evaluation of kinetic energy expectation values and the expansion of the inverse molecular-orbital overlap matrix into a Neumann series. By applying these techniques, we derived and implemented a series of orbital-dependent approximations for the non-additive kinetic energy, which are employed self-consistently. Our proof-of-principle computations demonstrated quantitatively correct results for potential energy curves and electron densities and hinted on the applicability of the introduced empirical parameters to different types of molecular systems and intermolecular interactions. Therefore, we conclude that the presented study is an important step toward constructing accurate and efficient orbital-dependent approximations for the non-additive kinetic energy applicable to large molecular systems.

Article Details

Volume / Issue Vol. 162, Issue 5
Published February 07, 2025
ISSN 0021-9606
Publisher American Institute of Physics

Journal Info

The Journal of Chemical Physics

American Institute of Physics

ISSN: 0021-9606 Physical Sciences

Authors (2)

L

Larissa Sophie Eitelhuber

Institut für Chemie und Biochemie, Freie Universität Berlin , Arnimallee 22, 14195 Berlin,

D

Denis G. Artiukhin

Institut für Chemie und Biochemie, Freie Universität Berlin , Arnimallee 22, 14195 Berlin,