Many-body perturbation theory using the density-functional concept: beyond the GW approximation
Other Condensed Matter
2010-07-01 v2
Abstract
We propose an alternative formulation of Many-Body Perturbation Theory that uses the density-functional concept. Instead of the usual four-point integral equation for the polarizability, we obtain a two-point one, that leads to excellent optical absorption and energy loss spectra. The corresponding three-point vertex function and self-energy are then simply calculated via an integration, for any level of approximation. Moreover, we show the direct impact of this formulation on the time-dependent density-functional theory. Numerical results for the band gap of bulk silicon and solid argon illustrate corrections beyond the GW approximation for the self-energy.
Keywords
Cite
@article{arxiv.cond-mat/0504565,
title = {Many-body perturbation theory using the density-functional concept: beyond the GW approximation},
author = {Fabien Bruneval and Francesco Sottile and Valerio Olevano and Rodolfo Del Sole and Lucia Reining},
journal= {arXiv preprint arXiv:cond-mat/0504565},
year = {2010}
}
Comments
4 pages, in press on Phys. Rev. Lett