English

Landau Levels and Quantum Hall Effect in Graphene Superlattices

Mesoscale and Nanoscale Physics 2009-07-24 v2

Abstract

We show that, when graphene is subjected to an appropriate one-dimensional external periodic potential, additional branches of massless fermions are generated with nearly the same electron-hole crossing energy as that at the original Dirac point of graphene. Because of these new zero-energy branches, the Landau levels at charge neutral filling becomes 4(2N+1)-fold degenerate (with N=0,1,2,..., tunable by the potential strength and periodicity) with the corresponding Hall conductivity σxy\sigma_{xy} showing a step of size 4(2N+1)e2/he^2/h. These theoretical findings are robust against variations in the details of the external potential and provide measurable signatures of the unusual electronic structure of graphene superlattices.

Keywords

Cite

@article{arxiv.0903.3091,
  title  = {Landau Levels and Quantum Hall Effect in Graphene Superlattices},
  author = {Cheol-Hwan Park and Young-Woo Son and Li Yang and Marvin L. Cohen and Steven G. Louie},
  journal= {arXiv preprint arXiv:0903.3091},
  year   = {2009}
}

Comments

7 pages, 7 figures