arXiv · cond-mat/0204488
Zener Tunneling Between Landau Orbits in a High-Mobility Two-Dimensional Electron Gas
Abstract
Magnetotransport in a laterally confined two-dimensional electron gas (2DEG) can exhibit modified scattering channels owing to a tilted Hall potential. Transitions of electrons between Landau levels with shifted guiding centers can be accomplished through a Zener tunneling mechanism, and make a significant contribution to the magnetoresistance. A remarkable oscillation effect in weak field magnetoresistance has been observed in high-mobility 2DEGs in GaAs-AlGa$_{0.3}$As$_{0.7}$ heterostructures, and can be well explained by the Zener mechanism.
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C. L. Yang, J. Zhang, R. R. Du, J. A. Simmons, J. L. Reno. 2002-08-21. Zener Tunneling Between Landau Orbits in a High-Mobility Two-Dimensional Electron Gas. https://doi.org/10.1103/physrevlett.89.076801
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