We have measured a strong increase of the low-temperature resistivity ρxx and a zero-value plateau in the Hall conductivity σxy at the charge neutrality point in graphene subjected to high magnetic fields up to 30 T. We explain our results by a simple model involving a field dependent splitting of the lowest Landau level of the order of a few Kelvin, as extracted from activated transport measurements. The model reproduces both the increase in ρxx and the anomalous ν=0 plateau in σxy in terms of coexisting electrons and holes in the same spin-split zero-energy Landau level.
@article{arxiv.0904.0948,
title = {Gap opening in the zeroth Landau level of graphene},
author = {A. J. M. Giesbers and L. A. Ponomarenko and K. S. Novoselov and A. K. Geim and M. I. Katsnelson and J. C. Maan and U. Zeitler},
journal= {arXiv preprint arXiv:0904.0948},
year = {2009}
}