English

Diffusion quantum Monte Carlo and GW study of the electronic properties of monolayer and bulk hexagonal boron nitride

Materials Science 2020-05-20 v2

Abstract

We report diffusion quantum Monte Carlo (DMC) and many-body GWGW calculations of the electronic band gaps of monolayer and bulk hexagonal boron nitride (hBN). We find the monolayer band gap to be indirect. GWGW predicts much smaller quasiparticle gaps at both the single-shot G0W0G_0W_0 and the partially self-consistent GW0GW_0 levels. In contrast, solving the Bethe-Salpeter equation on top of the GW0GW_0 calculation yields an exciton binding energy for the direct exciton at the KK point in close agreement with the DMC value. Vibrational renormalization of the electronic band gap is found to be significant in both the monolayer and the bulk. Taking vibrational effects into account, DMC overestimates the band gap of bulk hBN, while GWGW theory underestimates it.

Keywords

Cite

@article{arxiv.2003.06608,
  title  = {Diffusion quantum Monte Carlo and GW study of the electronic properties of monolayer and bulk hexagonal boron nitride},
  author = {R. J. Hunt and B. Monserrat and V. Zolyomi and N. D. Drummond},
  journal= {arXiv preprint arXiv:2003.06608},
  year   = {2020}
}