Unconventional superconductivity in a doped quantum spin Hall insulator
Superconductivity
2019-08-07 v1
Abstract
A monolayer of jacutingaite (PtHgSe) has recently been identified as a novel quantum spin Hall insulator. By first-principles calculations, we study its Fermiology in the doped regime and unveil a type-I and type-II van Hove singularity for hole and electron doping, respectively. We find that the common link between the propensity for a topological band gap at pristine filling and unconventional superconductivity at finite doping roots in the longer ranged hybridization integrals on the honeycomb lattice. In a combined effort of random phase approximation and functional renormalization group, we find chiral -wave order for the type-I and odd-parity -wave order for the type-II regime.
Cite
@article{arxiv.1811.01746,
title = {Unconventional superconductivity in a doped quantum spin Hall insulator},
author = {Xianxin Wu and Mario Fink and Werner Hanke and Ronny Thomale and Domenico Di Sante},
journal= {arXiv preprint arXiv:1811.01746},
year = {2019}
}
Comments
5 pages, 4 figures, Supplemental Material