English

Landau Level Splitting in Graphene in High Magnetic Fields

Mesoscale and Nanoscale Physics 2009-11-11 v1 Strongly Correlated Electrons

Abstract

The quantum Hall (QH) effect in two-dimensional (2D) electrons and holes in high quality graphene samples is studied in strong magnetic fields up to 45 T. QH plateaus at filling factors ν=0,±1,±4\nu=0,\pm 1,\pm 4 are discovered at magnetic fields B>B>20 T, indicating the lifting of the four-fold degeneracy of the previously observed QH states at ν=±(n+1/2)\nu=\pm(|n|+1/2), where nn is the Landau level index. In particular, the presence of the ν=0,±1\nu=0, \pm 1 QH plateaus indicates that the Landau level at the charge neutral Dirac point splits into four sublevels, lifting sublattice and spin degeneracy. The QH effect at ν=±4\nu=\pm 4 is investigated in tilted magnetic field and can be attributed to lifting of the spin-degeneracy of the n=1n=1 Landau level.

Cite

@article{arxiv.cond-mat/0602649,
  title  = {Landau Level Splitting in Graphene in High Magnetic Fields},
  author = {Y. Zhang and Z. Jiang and J. P. Small and M. S. Purewal and Y. -W. Tan and M. Fazlollahi and J. D. Chudow and J. A. Jaszczak and H. L. Stormer and P. Kim},
  journal= {arXiv preprint arXiv:cond-mat/0602649},
  year   = {2009}
}

Comments

11 pages including 4 figures, to appear in PRL