Physical Review B · 2009 · 61 citations · 19 references
Zero Resistance StatesSpintronicsElectrical EngineeringEngineeringPhysicsCharge SensorCharge TransportApplied PhysicsCondensed Matter PhysicsMicrowave-induced Zero-resistance StatesEquilibrium Charge InhomogeneityMagnetohydrodynamicsDisordered Quantum SystemMicrowave MeasurementTopological PhaseTopological Quantum StateMicrowave Engineering
We study the effect of inhomogeneities in Hall conductivity on the nature of the zero resistance states seen in the microwave irradiated two-dimensional electron systems in weak perpendicular magnetic fields and show that time-dependent domain patterns may emerge in some situations. For an annular Corbino geometry, with an equilibrium charge density that varies linearly with radius, we find a time-periodic nonequilibrium solution, which might be detected by a charge sensor, such as a single electron transistor. For a model on a torus, in addition to static domain patterns seen at high and low values of the equilibrium charge inhomogeneity, we find that, in the intermediate regime, a variety of nonstationary states can also exist. We catalog the possibilities we have seen in our simulations. Within a particular phenomenological model, we show that linearizing the nonlinear charge continuity equation about a particularly simple domain-wall configuration and analyzing the eigenmodes allows us to estimate the periods of the solutions to the full nonlinear equation.
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Evidence for a New Dissipationless Effect in 2D Electronic Transport
M. A. Zudov, Rui-Rui Du, L. N. Pfeiffer et al. · Physical Review Letters · 2003 · 527 citations · Full text
M. A. Zudov, Rui-Rui Du, J. A. Simmons et al. · Physical review. B, Condensed matter · 2001 · 379 citations
Categoryquantum Electronics, Quantum Science, Shubnikov–de Haas-like Oscillations +13
Radiation-Induced Magnetoresistance Oscillations in a 2D Electron Gas
Adam C. Durst, Subir Sachdev, N. Read et al. · Physical Review Letters · 2003 · 367 citations · Full text