Nematic superconductivity stabilized by density wave fluctuations: Possible application to twisted bilayer graphene
Superconductivity
2019-04-10 v2 Strongly Correlated Electrons
Abstract
Nematic superconductors possess unconventional superconducting order parameters that spontaneously break rotational symmetry of the underlying crystal. In this work we propose a mechanism for nematic superconductivity stabilized by strong density wave fluctuations in two dimensions. While the weak-coupling theory finds the fully gapped chiral state to be energetically stable, we show that strong density wave fluctuations result in an additional contribution to the free energy of a superconductor with multicomponent order parameters, which generally favors nematic superconductivity. Our theory shades light on the recent observation of rotational symmetry breaking in the superconducting state of twisted bilayer graphene.
Keywords
Cite
@article{arxiv.1810.04159,
title = {Nematic superconductivity stabilized by density wave fluctuations: Possible application to twisted bilayer graphene},
author = {Vladyslav Kozii and Hiroki Isobe and Jörn W. F. Venderbos and Liang Fu},
journal= {arXiv preprint arXiv:1810.04159},
year = {2019}
}