Modeling water using multipole response tensors fitted to the monomer geometry

J Jonatan Öström (Department of Physics, Stockholm University , 10691 Stockholm,) L Lars G. M. Pettersson (Department of Physics, AlbaNova University Center, Stockholm University , 10961 Stockholm,)

Abstract

The water molecule’s electronic Cartesian multipole moment and polarizability tensors have been fitted with Gaussian process regression to the internal coordinates and are used to evaluate accurate electrostatic, induction, and dispersion energy components between flexible molecules. The model yields a handful of damping and scaling parameters that were adjusted for the energy components to agree with 2-body symmetry-adapted perturbation theory decomposition and then fine-tuned in order for the total energy to agree with CCSD(T) for small clusters. We present a simple algorithm for rotating symmetric Cartesian tensors and employ a dispersion potential based on multipole polarizabilities. At short range, the 2- and 3-body potential energy was corrected to CCSD(T) accuracy using Gaussian approximation potentials. The radial distribution function and self-diffusion coefficient obtained with molecular dynamics simulations agree well with experiments.

Article Details

Volume / Issue Vol. 163, Issue 9
Published September 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)

J

Jonatan Öström

Department of Physics, Stockholm University , 10691 Stockholm,

L

Lars G. M. Pettersson

Department of Physics, AlbaNova University Center, Stockholm University , 10961 Stockholm,