Fermi Liquid Model of Radiation Induced Magnetoresistance Oscillations in GaAs/AlGaAs Heterostructure Two-Dimensional Electron System: Theoretical Evidence of an Electron Reservoir
arXiv:0812.2304 · doi:10.1142/S0217984910024304
Abstract
The magnetoresistance oscillations in GaAs/AlGaAs heterostructures induced by millimeterwave radiation recently observed by Zudov et al. [Phys. Rev. B {\bf 64}, 201311 (2001)] is theoretically reproduced by introducing a model based on the finite temperature Fermi liquid theory of dc conductivity and the electron reservoir hypothesis. The obtained oscillation patterns show excellent agreement with the experimental result by Zudov et al. and are independent of the polarization of the radiation field in accordance with the experimental observation by Smet et al. [Phys. Rev. Lett. {\bf 95}, 116804 (2005)].
11 pages, 3 figures
References in corpus (21)
- Evidence for a New Dissipationless Regime in 2D Electronic Transport
- Radiation-Induced Magnetoresistance Oscillations in a 2D Electron Gas
- Dynamical symmetry breaking as the origin of the zero--resistance state in an -driven system
- Magnetotransport in two-dimensional electron gas at large filling factors
- Circular polarization dependent study of the microwave photoconductivity in a two-dimensional electron system
- Demonstration of a 1/4 cycle phase shift in the radiation-induced oscillatory-magnetoresistance in GaAs/AlGaAs devices
- Microwave-induced magnetotransport phenomena in two-dimensional electron systems: Importance of electrodynamic effects
- On the phase of oscillatory microwave photoresistance and zero-resistance states
- Nonlinear effects in microwave photoconductivity of two-dimensional electron systems
- Absolute Negative Conductivity in Two-Dimensional Electron Systems Associated with Acoustic Scattering Stimulated by Microwave Radiation
- Frequency quenching of microwave induced resistance oscillations in a high mobility two-dimensional electron gas
- Kubo formula for Floquet states and photoconductivity oscillations in a 2D electron gas
- Microwave photoconductivity of two-dimensional electron systems with unidirectional periodic modulation
- Microwave Photoconductivity in Two-Dimensional Electron Systems due to Photon-Assisted Interaction of Electrons with Leaky Interface Phonons
- Microwave photoresponse in the 2D electron system caused by intra-Landau level transitions
- Non-linear magnetotransport in microwave-illuminated two-dimensional electron systems
- Density dependence of microwave induced magneto-resistance oscillations in a two-dimensional electron gas
- Quantized Dispersion of Two-Dimensional Magnetoplasmons Detected by Photoconductivity Spectroscopy
- Surface acoustic wave induced magnetoresistance oscillations in a 2D electron gas
- Magneto-oscillations due to electron-electron interactions in the ac conductivity of a 2D electron gas
- Radiation induced oscillations of the Hall resistivity in two-dimensional electron systems
Cited by in corpus (4)
- Observation of linear-polarization-sensitivity in the microwave-radiation-induced magnetoresistance oscillations
- Magneto-transport characteristics of a 2D electron system driven to negative magneto-conductivity by microwave photoexcitation
- Reservoir model for two-dimensional electron gases in quantizing magnetic fields: a review
- Magnetic induction dependence of the dispersion of magnetoplasmon in a two-dimensional electron gas with finite layer thickness