Nonlinear magnetoresistance of an irradiated two-dimensional electron system
arXiv:0808.3423 · doi:10.1063/1.2969043
Abstract
Nonlinear magnetotransport of a microwave-irradiated high mobility two-dimensional electron system under a finite direct current excitation is analyzed using a dc-controlled scheme with photon-assisted transition mechanism. The predicted amplitudes, extrema and nodes of the oscillatory differential resistance versus the magnetic field and the current density, are in excellent agreement with the recent experimental observation [Hatke et al. Phys. Rev. B 77, 201304(R) (2008)].
4 pages, 2 figures
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Cited by in corpus (5)
- Mechanisms of the microwave photoconductivity in 2D electron systems with mixed disorder
- Temperature Dependence of Microwave Photoresistance in 2D Electron Systems
- Microwave Photoresistance in dc-driven 2D Systems at Cyclotron Resonance Subharmonics
- Theory of the microwave-induced photocurrent and photovoltage magnetooscillations in a spatially non-uniform 2D electron gas
- Nonlinear theory of fractional microwave-induced magnetoresistance oscillations in a dc-driven two-dimensional electron system