Publication | Open Access
Microwave-Induced Magneto-Oscillations and Signatures of Zero-Resistance States in Phonon-Drag Voltage in Two-Dimensional Electron Systems
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Citations
24
References
2015
Year
Electrical EngineeringEngineeringSpecific ResistancePhysicsPhonon-drag Voltage OscillationsNanoelectronicsMicrowave-induced Magneto-oscillationsApplied PhysicsCondensed Matter PhysicsLow-dimensional SystemPhononZero-resistance StatesMicrowave IrradiationPhonon-drag VoltageResistance OscillationsCharge Carrier TransportCharge TransportElectron Physic
We observe the phonon-drag voltage oscillations correlating with the resistance oscillations under microwave irradiation in a two-dimensional electron gas in perpendicular magnetic field. This phenomenon is explained by the influence of dissipative resistivity modified by microwaves on the phonon-drag voltage perpendicular to the phonon flux. When the lowest-order resistance minima evolve into zero-resistance states, the phonon-drag voltage demonstrates sharp features suggesting that current domains associated with these states can exist in the absence of external dc driving.
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