Elastic Scattering as a Cause of Quantum Dephasing: The Conductance of Two-Dimensional Imperfect Conductors
arXiv:cond-mat/0003073 · doi:10.1088/0959-7174/10/4/301
Abstract
A method is proposed for studying wave and particle transport in disordered waveguide systems of dimension higher than unity by means of exact one-dimensionalization of the dynamic equations in the mode representation. As a particular case, the T=0 conductance of a two-dimensional quantum wire is calculated, which exhibits ohmic behaviour, with length-dependent conductivity, at any conductor length exceeding the electron quasi-classical mean free path. The unconventional diffusive regime of charge transport is found in the range of conductor lengths where the electrons are commonly considered as localized. In quantum wires with more than one conducting channel, each being identified with the extended waveguide mode, the inter-mode scattering is proven to serve as a phase-breaking mechanism that prevents interference localization without real inelasticity of interaction.
RevTeX, 17 pages, no figures. Final version with minor text changes
References in corpus (1)
Cited by in corpus (12)
- Electron localization in two-dimensional surface-corrugated conductors: manifestation of competing scattering mechanisms
- Influence of Random Bulk Inhomogeneities on Quasi-Optical Cavity Resonator Spectrum
- The Effect of Random Surface Inhomogeneities on Microresonator Spectral Properties: Theory and Modeling at Millimeter Wave Range
- Physics at the FQMT'04 conference
- Spectral properties of cylindrical quasi-optical cavity resonator with random-inhomogeneous side boundary: correlation between dephasing and dissipation
- The sharpness-induced mode stopping and spectrum rarefication in waveguides with periodically corrugated walls
- Dual nature of localization in guiding systems with randomly corrugated boundaries: Anderson-type versus entropic
- The metal-insulator transition in 2D systems at T = 0: one-particle approach
- Spectrum of an open disordered quasi-two-dimensional electron system: strong orbital effect of the weak in-plane magnetic field
- Propagation of wave packets in randomly stratified media
- "Unusual" metals in two dimensions: one-particle model of the metal-insulator transition at T=0
- Metal-insulator transition in a two-dimensional electron system: the orbital effect of in-plane magnetic field