Abstract
We describe a new regime of magnetotransport in two-dimensional electron systems in the presence of a narrow potential barrier. In such systems, the Landau level states, which are confined to the barrier region in strong magnetic fields, undergo a deconfinement transition as the field is lowered. Transport measurements on a top-gated graphene device are presented. Shubnikov-de Haas (SdH) oscillations, observed in the unipolar regime, are found to abruptly disappear when the strength of the magnetic field is reduced below a certain critical value. This behavior is explained by a semiclassical analysis of the transformation of closed cyclotron orbits into open, deconfined trajectories. © 2011 American Physical Society.
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CITATION STYLE
Gu, N., Rudner, M., Young, A., Kim, P., & Levitov, L. (2011). Collapse of Landau levels in gated graphene structures. Physical Review Letters, 106(6). https://doi.org/10.1103/PhysRevLett.106.066601
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