Microwave-induced resistance oscillations in tilted magnetic fields
arXiv:1211.3753 · doi:10.1103/PhysRevB.86.235305
Abstract
We have studied the effect of an in-plane magnetic field on microwave-induced resistance oscillations in a high mobility two-dimensional electron system. We have found that the oscillation amplitude decays exponentially with an in-plane component of the magnetic field . While these findings cannot be accounted for by existing theories, our analysis suggests that the decay can be explained by a -induced correction to the quantum scattering rate, which is quadratic in .
References in corpus (22)
- Theory of microwave-induced oscillations in the magnetoconductivity of a 2D electron gas
- Nonequilibrium phenomena in high Landau levels
- Magnetotransport in a two-dimensional electron system in dc electric fields
- Mechanisms of the microwave photoconductivity in 2D electron systems with mixed disorder
- Frequency quenching of microwave induced resistance oscillations in a high mobility two-dimensional electron gas
- Nonlinear growth with the microwave intensity in radiation-induced magnetoresistance oscillations
- Temperature Dependence of Microwave Photoresistance in 2D Electron Systems
- Magnetoresistance Oscillations in Two-dimensional Electron Systems Induced by AC and DC Fields
- Bichromatic Microwave Photoresistance of Two-Dimensional Electron System
- Giant microwave photoresistivity in a high-mobility quantum Hall system
- Degenerate states of narrow semiconductor rings in the presence of spin orbit coupling: Role of time-reversal and large gauge transformations
- Microwave zero-resistance states in a bilayer electron system
- Role of electron-electron interactions in nonlinear transport in 2D electron systems
- Effect of microwave radiation on non-linear resistivity of a two-dimensional electron gas at large filling factors
- Non-linear magnetotransport in microwave-illuminated two-dimensional electron systems
- Microwave Photoresistance in dc-driven 2D Systems at Cyclotron Resonance Subharmonics
- Zero differential resistance in two-dimensional electron systems at large filling factors
- Multiphoton microwave photoresistance in a high-mobility two-dimensional electron gas
- Shubnikov-de Haas oscillations in GaAs quantum wells in tilted magnetic fields
- Microwave photoresistance in a two-dimensional electron gas with separated Landau levels
- Non-linear response of a high mobility two-dimensional electron system near the second harmonic of the cyclotron resonance
- Effect of parallel magnetic field on the Zero Differential Resistance State
Cited by in corpus (10)
- Observation of microwave-induced resistance oscillations in strained Ge/SiGe quantum wells
- Magneto-transport characteristics of a 2D electron system driven to negative magneto-conductivity by microwave photoexcitation
- Combined study of microwave-power/linear-polarization dependence of the microwave-radiation-induced magnetoresistance oscillations in GaAs/AlGaAs devices
- Comparative study of microwave radiation-induced magnetoresistive oscillations induced by circularly- and linearly- polarized photo-excitation
- Strong Transport Anisotropy in a Ge/SiGe Quantum Well in Tilted Magnetic Fields
- Microwave Photoresistance in an Ultrahigh Quality GaAs Quantum Well
- Positive Quantum Magnetoresistance in Tilted Magnetic Field
- Radiation-assisted magnetotransport in two-dimensional electron gas systems: appearance of zero resistance states
- Transport anisotropy in Ge quantum wells in the absence of quantum oscillations
- Frequency-dependent polarization-angle-phase-shift in the microwave-induced magnetoresistance oscillations