Local vs non-local correlation effects in interacting quantum spin Hall insulators
Strongly Correlated Electrons
2021-12-22 v1 Quantum Physics
Abstract
The impact of Coulomb interaction on the electronic properties of a quantum spin-Hall insulator is studied using quantum cluster methods, disentangling local from non-local effects. We identify different regimes, according to the value of the bare mass term, characterized by drastically different self-energy contributions. For small mass, non-local correlations start to be important and eventually dominate over local ones when getting close enough to the zero-mass semi-metallic line. For intermediate and large mass, local correlation effects outweigh non-local corrections, leading to a first-order topological phase transition, in agreement with previous predictions.
Cite
@article{arxiv.2110.05364,
title = {Local vs non-local correlation effects in interacting quantum spin Hall insulators},
author = {Lorenzo Crippa and Adriano Amaricci and Severino Adler and Giorgio Sangiovanni and Massimo Capone},
journal= {arXiv preprint arXiv:2110.05364},
year = {2021}
}
Comments
11 pages, 9 figures