arXiv · 1311.2560
Landau Level Splitting in Rotationally Faulted Multilayer Graphene
Abstract
We show that valley degeneracy in rotationally faulted multilayer graphene may be broken in the presence of a magnetic field and interlayer commensurations. This happens due to a simultaneous breaking of both time-reversal and inversion symmetries leading to a splitting of Landau levels linear in the field. Our theoretical work is motivated by an experiment [Y. J. Song et al., Nature 467, 185 (2010)] on epitaxially grown multilayer graphene where such linear splitting of Landau levels was observed at moderate fields. We consider both bilayer and trilayer configurations and, although a linear splitting occurs in both cases, we show that the latter produces a splitting that is in quantitative agreement with the experiment.
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Hridis K Pal, E. J. Mele, M. Kindermann. 2013-11-11. Landau Level Splitting in Rotationally Faulted Multilayer Graphene. https://doi.org/10.1103/physrevb.89.081403
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