Physical review. B, Condensed matter · 1997 · 248 citations · 19 references
EngineeringCharge TransportElectron PhysicEnergy CurrentsThermoelectric ResponseTransport PhenomenaBoundary CurrentsThermodynamicsLow-dimensional SystemTwo-dimensional Electron GasElectrical EngineeringLinear Thermoelectric ResponsePhysicsThermal TransportQuantum ChemistryQuantum MagnetismEntropyNatural SciencesApplied PhysicsCondensed Matter PhysicsQuantizing Magnetic FieldThermoelectric Material
We present a discussion of the linear thermoelectric response of an interacting electron gas in a quantizing magnetic field. Boundary currents can carry a significant fraction of the net current passing through the system. We derive general expressions for the bulk and boundary components of the number and energy currents. We show that the local current density may be described in terms of ``transport'' and ``internal magnetization'' contributions. The latter carry no net current and are not observable in standard transport experiments. We show that although Onsager relations cannot be applied to the local current, they are valid for the transport currents and hence for the currents observed in standard transport experiments. We relate three of the four thermoelectric response coefficients of a disorder-free interacting two-dimensional electron gas to equilibrium thermodynamic quantities. In particular, we show that the diffusion thermopower is proportional to the entropy per particle, and we compare this result with recent experimental observations.
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Reciprocal Relations in Irreversible Processes. I.
Lars Onsager · Physical Review · 1931 · 6.4K citations · Full text
Reciprocal Relations in Irreversible Processes. II.
Lars Onsager · Physical Review · 1931 · 5.2K citations · Full text
Dragan Panti · Microelectronics Journal · 1998 · 549 citations
Semiconductors, Semiconductor Technology, Electrical Engineering +4