First-principles calculations of the electronic structure of open-shell condensed matter systems
Materials Science
2014-09-11 v1
Abstract
We develop a Green's function approach to quasiparticle excitations of open-shell systems within the GW approximation. It is shown that accurate calculations of the characteristic multiplet structure require a precise knowledge of the self energy and, in particular, its poles. We achieve this by constructing the self energy from appropriately chosen mean-field theories on a fine frequency grid. We apply our method to a two-site Hubbard model, several molecules and the negatively charged nitrogen-vacancy defect in diamond, and obtain good agreement with experiment and other high-level theories.
Keywords
Cite
@article{arxiv.1202.5030,
title = {First-principles calculations of the electronic structure of open-shell condensed matter systems},
author = {Johannes Lischner and Jack Deslippe and Manish Jain and Steven G. Louie},
journal= {arXiv preprint arXiv:1202.5030},
year = {2014}
}
Comments
5 pages