All-electron quasi-particle self-consistent $GW$ band structures for SrTiO$_3$ including lattice polarization corrections in different phase
Abstract
The electronic band structure of SrTiO is investigated in the all-electron QS approximation. Unlike previous pseudopotential based QS or single-shot calculations, the gap is found to be significantly overestimated compared to experiment. After putting in a correction for the underestimate of the screening by the random phase approximation in terms of a 0.8 approach, the gap is still overestimated. The 0.8 approach is discussed and justified in terms of various recent literature results including electron-hole corrections. Adding a lattice polarization correction (LPC) in the limit for the screening of , agreement with experiment is recovered. The LPC is alternatively estimated using a polaron model. We apply our approach to the cubic and tetragonal phases as well as a hypothetical layered post-perovskite structure and find that the LDA (local density approximation) to gap correction is almost independent of structure.
Keywords
Cite
@article{arxiv.1709.09194,
title = {All-electron quasi-particle self-consistent $GW$ band structures for SrTiO$_3$ including lattice polarization corrections in different phase},
author = {Churna Bhandari and Mark van Schilfgaarde and Takao Kotani and Walter R. L. Lambrecht},
journal= {arXiv preprint arXiv:1709.09194},
year = {2018}
}
Comments
9 pages, 4 figures