Zero-energy states in corrugated bilayer graphene
Abstract
Anomalous quantum Hall effects in single-layer and bilayer graphene are related with nontrivial topological properties of electron states (Berry phases and 2, respectively). It was known that the Atiyah-Singer index theorem guarantees, for the case of the single-layer, existence of zero-energy states for the case of inhomogeneous magnetic fields assuming that the total flux is non-zero. This leads, in particular, to appearance of midgap states in corrugated graphene and topologically protects zero-energy Landau level in corrugated single-layer graphene. Here we apply this theorem to the case of bilayer graphene and prove the existence of zero-energy modes for this case.
Keywords
Cite
@article{arxiv.0802.1409,
title = {Zero-energy states in corrugated bilayer graphene},
author = {M. I. Katsnelson and M. F. Prokhorova},
journal= {arXiv preprint arXiv:0802.1409},
year = {2008}
}
Comments
minor changes (misprints are fixed, a bit more explanations in the mathematical part are added)