Reservoir model for two-dimensional electron gases in quantizing magnetic fields: a review
arXiv:1306.1213 · doi:10.1002/pssb.201349251
Abstract
We collect and review works which treat two-dimensional electron gases in quantum wells (mostly GaAs/GaAlAs heterostructures) in the presence of quantizing magnetic fields as open systems in contact with outside reservoirs. If a reservoir is sufficiently large, it pins the Fermi level to a certain energy. As a result, in a varying external magnetic field, the thermodynamic equilibrium will force oscillations of the electron density in and out of the quantum well (QW). This leads to a number of physical phenomena in magneto-transport, interband and intraband magneto-optics, magnetization, magneto-plasma dispersion, etc. In particular, as first proposed by Baraff and Tsui, the density oscillations in and out of QW lead to plateaus in the Integer Quantum Hall Effect (IQHE) at values observed in experiments. The gathered evidence, especially from magneto-optical investigations, allows us to conclude that, indeed, in most GaAs/GaAlAs hetrostructures one deals with open systems in which the electron density in QWs oscillates as the magnetic field varies. Relation of the density oscillations to other factors, such as electron localization, and their combined influence on the quantum transport in 2D electron gases, is discussed. In particular, a validity of the classical formula for the Hall resistivity ρxy = B/Nec is considered. It is concluded that the density oscillations are not sufficient to be regarded as the only source of plateaus in IQHE, although such claims have been sometimes made in the past and present. Still, our general conclusion is that the reservoir approach should be included in various descriptions of 2D electron gases in the present of a magnetic field. An attempt has been made to quote all the relevant literature on the subject.
17 pages, 23 figures
References in corpus (6)
- Experimental Observation of Quantum Hall Effect and Berry's Phase in Graphene
- Circular polarization dependent study of the microwave photoconductivity in a two-dimensional electron system
- Anomalously strong pinning of the filling factor nu=2 in epitaxial graphene
- Quantized Dispersion of Two-Dimensional Magnetoplasmons Detected by Photoconductivity Spectroscopy
- Self-consistent equilibrium of a two-dimensional electron system with a reservoir in a quantizing magnetic field: Analytical approach
- Fermi Liquid Model of Radiation Induced Magnetoresistance Oscillations in GaAs/AlGaAs Heterostructure Two-Dimensional Electron System: Theoretical Evidence of an Electron Reservoir
Cited by in corpus (8)
- Experimental evidence for topological surface states wrapping around bulk SnTe crystal
- Puddle-induced resistance oscillations in the breakdown of the graphene quantum Hall effect
- Perspectives of HgTe Topological Insulators for Quantum Hall Metrology
- Unconventional Reentrant Quantum Hall Effect in a HgTe/CdHgTe Double Quantum Well
- Transport properties of a 1000-nm HgTe film: the interplay of surface and bulk carriers
- Charge metastability and hysteresis in the quantum Hall regime
- Conduction electrons in acceptor-doped GaAs/GaAlAs heterostructures: a review
- Giant Shubnikov-de Haas Oscillations with V-Shaped Minima in a High-Mobility Two-Dimensional Electron Gas: Experiment and Phenomenological Model