From the two-dimensional electron gas to antidot superlattices: Magnetoresistance effects in the transition regime

  • Magnetoresistance measurements and theoretical calculations for two-dimensional electron systems under a perpendicular magnetic field are presented which illuminate transport effects due to a periodic electrostatic potential modulation. We focus on features arising from the resolution of the magnetic miniband structure which are beyond the perturbative regime governed by the dispersion of LandauMagnetoresistance measurements and theoretical calculations for two-dimensional electron systems under a perpendicular magnetic field are presented which illuminate transport effects due to a periodic electrostatic potential modulation. We focus on features arising from the resolution of the magnetic miniband structure which are beyond the perturbative regime governed by the dispersion of Landau bands. Our non-perturbative quantum-mechanical calculations reveal that the dispersion of individual minibands is responsible for the complicated behaviour of the magnetoresistance in the regime of intermediate modulation strength. In particular, the interplay between miniband and scattering contributions to the conductivity leads to an almost structureless magnetoresistance in this regime followed by the formation of antidot peaks due to the miniband conductivity.show moreshow less

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Metadaten
Author:Oliver SteffensOTHORCiDGND, Tilman Schlösser, Peter Rotter, Klaus Ensslin, Michael Suhrke, Jörg Kotthaus, Ulrich Rössler, M. Holland
DOI:https://doi.org/10.1088/0953-8984/10/17/016
ISSN:0953-8984
Parent Title (English):Journal of Physics: Condensed Matter
Document Type:Article
Language:English
Year of first Publication:1998
Release Date:2021/09/15
Volume:10
Issue:17
First Page:3859
Last Page:3872
Institutes:Fakultät Angewandte Natur- und Kulturwissenschaften
Fakultät Angewandte Natur- und Kulturwissenschaften / Labor Bauphysik
Begutachtungsstatus:peer-reviewed
Publication:Externe Publikationen
research focus:Materialien und Produktion
Frontdoor-URL:https://opus4.kobv.de/opus4-oth-regensburg/2050
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