Midgap states in corrugated graphene: Ab-initio calculations and effective field theory
Mesoscale and Nanoscale Physics
2008-11-26 v2
Abstract
We investigate the electronic properties of corrugated graphene and show how rippling-induced pseudomagnetic fields alter graphene's low-energy electronic properties by combining first principles calculations with an effective field theory. The formation of flat bands near the Fermi level corresponding to pseudo-Landau levels is studied as a function of the rippling parameters. Quenched and relaxed ripples turn out to be fundamentally different is this respect: It is demonstrated, both numerically and analytically, that annealing of quenched ripples can destroy the flat bands.
Keywords
Cite
@article{arxiv.0710.5828,
title = {Midgap states in corrugated graphene: Ab-initio calculations and effective field theory},
author = {T. O. Wehling and A. V. Balatsky and A. M. Tsvelik and M. I. Katsnelson and A. I. Lichtenstein},
journal= {arXiv preprint arXiv:0710.5828},
year = {2008}
}
Comments
5 pages, 3 figures, manuscript extended