Related Experiment Video
Updated: May 23, 2026

Computation of Atmospheric Concentrations of Molecular Clusters from ab initio Thermochemistry
Published on: April 8, 2020
On the evaluation of the non-interacting kinetic energy in density functional theory
Michael J G Peach1, David G J Griffiths, David J Tozer
1Department of Chemistry, Durham University, South Road, Durham DH1 3LE, United Kingdom. m.j.g.peach@durham.ac.uk
Abstract:
The utility of both an orbital-free and a single-orbital expression for computing the non-interacting kinetic energy in density functional theory is investigated for simple atomic systems. The accuracy of both expressions is governed by the extent to which the Kohn-Sham equation is solved for the given exchange-correlation functional and so special attention is paid to the influence of finite Gaussian basis sets. The orbital-free expression is a statement of the virial theorem and its accuracy is quantified. The accuracy of the single-orbital expression is sensitive to the choice of Kohn-Sham orbital. The use of particularly compact orbitals is problematic because the failure to solve the Kohn-Sham equation exactly in regions where the orbital has decayed to near-zero leads to unphysical behaviour in regions that contribute to the kinetic energy, rendering it inaccurate. This problem is particularly severe for core orbitals, which would otherwise appear attractive due to their formally nodeless nature. The most accurate results from the single-orbital expression are obtained using the relatively diffuse, highest occupied orbitals, although special care is required at orbital nodes.
More Related Videos
Related Concept Videos
Kinetic Energy for a Rigid Body
Potential-Energy Criterion for Equilibrium
Molecular Kinetic Energy
The Quantum-Mechanical Model of an Atom
Thermodynamic Potentials
The Molecular Nature of Internal Energy

