The relativistic Scott correction for atoms and molecules
Mathematical Physics
2013-10-30 v1 math.MP
Spectral Theory
Abstract
We prove the first correction to the leading Thomas-Fermi energy for the ground state energy of atoms and molecules in a model where the kinetic energy of the electrons is treated relativistically. The leading Thomas-Fermi energy, established in [Sorensen], as well as the correction given here are of semi-classical nature. Our result on atoms and molecules is proved from a general semi-classical estimate for relativistic operators with potentials with Coulomb-like singularities. This semi-classical estimate is obtained using the coherent state calculus introduced in [Solovej-Spitzer]. The paper contains a unified treatment of the relativistic as well as the non-relativistic case.
Cite
@article{arxiv.0808.2163,
title = {The relativistic Scott correction for atoms and molecules},
author = {Jan Philip Solovej and Thomas Østergaard Sørensen and Wolfgang L. Spitzer},
journal= {arXiv preprint arXiv:0808.2163},
year = {2013}
}
Comments
59 pages