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The Nature of Quantum Hall States near the Charge Neutral Dirac Point in Graphene

arXiv:0705.1102 · doi:10.1103/PhysRevLett.99.106802

Abstract

We investigate the quantum Hall (QH) states near the charge neutral Dirac point of a high mobility graphene sample in high magnetic fields. We find that the QH states at filling factors $ν=\pm1$ depend only on the perpendicular component of the field with respect to the graphene plane, indicating them to be not spin-related. A non-linear magnetic field dependence of the activation energy gap at filling factor $ν=1$ suggests a many-body origin. We therefore propose that the $ν=0$ and $\pm1$ states arise from the lifting of the spin and sub-lattice degeneracy of the $n=0$ LL, respectively.

4 pages, 4 figures, to appear in Phys. Rev. Lett