Self-consistent $GW$+EDMFT for semiconductors and insulators
Abstract
Theoretical studies of semiconductors and band insulators are usually based on variants of the method without full self-consistency, like single-shot or quasiparticle self-consistent . Fully self-consistent provides a poor description of the gap size and electronic structure due to the lack of vertex corrections. While it is hard to predict at which order corrections can be neglected, local vertex corrections to all orders can be consistently included by combining with extended dynamical mean field theory (EDMFT). Here, we show that {\it ab initio} multitier +EDMFT calculations, which achieve full self-consistency in a suitably defined low-energy space, provide a remarkably accurate description of semiconductors and band insulators. Our results imply that despite the weak correlations, local vertex corrections are essential for a consistent treatment of this class of materials.
Keywords
Cite
@article{arxiv.2410.19579,
title = {Self-consistent $GW$+EDMFT for semiconductors and insulators},
author = {Viktor Christiansson and Francesco Petocchi and Philipp Werner},
journal= {arXiv preprint arXiv:2410.19579},
year = {2024}
}