English

Universal enhancement of superconductivity in two dimensional semiconductors at low doping by electron-electron interaction

Superconductivity 2015-03-05 v2 Materials Science

Abstract

In two-dimensional multivalley semiconductors, at low doping, even a moderate electron-electron interaction enhances the response to any perturbation inducing a valley polarization. If the valley polarization is due to the electron-phonon coupling, the electron-electron interaction results in an enhancement of the superconducting critical temperature. By performing first principles calculations beyond density functional theory, we prove that this effect accounts for the unconventional doping-dependence of the superconducting transition-temperature (Tc_c) and of the magnetic susceptibility measured in Lix_xZrNCl. By finding the conditions for a maximal Tc_c enhancement, we show how weakly-doped two-dimensional semiconductors provide a route towards high Tc_c superconductivity.

Keywords

Cite

@article{arxiv.1408.6502,
  title  = {Universal enhancement of superconductivity in two dimensional semiconductors at low doping by electron-electron interaction},
  author = {Matteo Calandra and Paolo Zoccante and Francesco Mauri},
  journal= {arXiv preprint arXiv:1408.6502},
  year   = {2015}
}

Comments

5 Pages + Supplementary materials, 9 Pictures overall, to appear on Phys. Rev. Lett