Publication | Open Access
Wigner transport models of the electron-phonon kinetics in quantum wires
37
Citations
39
References
2006
Year
Quantum DynamicQuantum ScienceEngineeringQuantum ComputingPhysicsWigner Transport ModelsNatural SciencesApplied PhysicsCondensed Matter PhysicsQuantum MaterialsLow-dimensional SystemPhononModel EquationsQuantum ChemistryElectron-phonon Wigner EquationUltrafast Electron TransportCharge Carrier Transport
Two quantum-kinetic models of ultrafast electron transport in quantum wires are derived from the generalized electron-phonon Wigner equation. The various assumptions and approximations allowing one to find closed equations for the reduced electron Wigner function are discussed with an emphasis on their physical relevance. The models correspond to the Levinson and Barker-Ferry equations, now generalized to account for a space-dependent evolution. They are applied to study the quantum effects in the dynamics of an initial packet of highly nonequilibrium carriers, locally generated in the wire. The properties of the two model equations are compared and analyzed.
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