Unconventional superconductivity mediated solely by isotropic electron-phonon interaction
Abstract
Unconventional superconductivity is commonly linked to electronic pairing mechanisms, since it is believed that the conventional electron-phonon interaction (EPI) cannot cause sign-changing superconducting gap symmetries. Here, we show that this common understanding needs to be revised when one considers a more elaborate theory of electron-phonon superconductivity beyond standard approximations. We selfconsistently solve the full-bandwidth, anisotropic Eliashberg equations including vertex corrections beyond Migdal's approximation assuming the usual isotropic EPI for cuprate, Fe-based and heavy-fermion superconductors with nested Fermi surfaces. In case of the high- cuprates we find a -wave order parameter, as well as a nematic state upon increased doping. For Fe-based superconductors, we obtain gap symmetry, while for heavy-fermion CeCoIn we find unconventional -wave pairing. These results provide a proof-of-concept that EPI cannot be excluded as a mediator of unconventional and of high- superconductivity.
Cite
@article{arxiv.2106.12319,
title = {Unconventional superconductivity mediated solely by isotropic electron-phonon interaction},
author = {Fabian Schrodi and Peter M. Oppeneer and Alex Aperis},
journal= {arXiv preprint arXiv:2106.12319},
year = {2021}
}