Quantum chaos and magnetotransport in lateral superlattices: The transition from weak to strong modulation potential

  • Magnetotransport in lateral superlattices covers a variety of apparently different physics dependent on the amplitude of the modulation potential relative to the Fermi energy ranging from the weakly modulated 2DEG to the antidot lattice. Here we investigate the transition between weak modulation and antidots within the quantum-mechanical theory by studying (i) the single-particle spectrum withMagnetotransport in lateral superlattices covers a variety of apparently different physics dependent on the amplitude of the modulation potential relative to the Fermi energy ranging from the weakly modulated 2DEG to the antidot lattice. Here we investigate the transition between weak modulation and antidots within the quantum-mechanical theory by studying (i) the single-particle spectrum with respect to quantum signatures of classical chaos and (ii) the change of characteristic features in the magnetoresistance starting from the Kubo formula.show moreshow less

Export metadata

Additional Services

Share in Twitter Search Google Scholar Statistics
Metadaten
Author:Michael Suhrke, Oliver SteffensOTHORCiDGND, Peter Rotter, Ulrich Rössler
DOI:https://doi.org/10.1016/S1386-9477(97)00060-X
ISSN:1386-9477
Parent Title (English):Physica E: Low-dimensional Systems and Nanostructures
Document Type:Article
Language:English
Year of first Publication:1997
Release Date:2021/10/04
Tag:Commensurability oscillations; Lateral superlattices; Level statistics; Magnetotransport; Quantum chaos
Volume:1
Issue:1-4
First Page:281
Last Page:287
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/2090
Einverstanden ✔
Diese Webseite verwendet technisch erforderliche Session-Cookies. Durch die weitere Nutzung der Webseite stimmen Sie diesem zu. Unsere Datenschutzerklärung finden Sie hier.