arXiv · 1007.4211
Phonon-induced resistance oscillations of two-dimensional electron systems drifting with supersonic velocities
Abstract
We present a theory of the phonon-assisted nonlinear dc transport of 2D electrons in high Landau levels. The nonlinear dissipative resistivity displays quantum magneto-oscillations governed by two parameters which are proportional to the Hall drift velocity $v_H$ of electrons in electric field and the speed of sound $s$. In the subsonic regime, $v_H s$, the amplitude of oscillations saturates with lowering temperature, while the subsonic region displays exponential suppression of the phonon-assisted oscillations with temperature.
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I. A. Dmitriev, R. Gellmann, M. G. Vavilov. 2010-07-23. Phonon-induced resistance oscillations of two-dimensional electron systems drifting with supersonic velocities. https://doi.org/10.1103/physrevb.82.201311
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