Shell structure and exchange-related spin effects for quantum dots in a magnetic field

  • Ground-state calculations based on current spin density-functional theory for circular parabolic quantum dots are presented which reveal interesting spin effects in dependence on an external magnetic field: Hund's first rule (well-known from atomic physics for zero magnetic field) is related to the level occupancy near the Fermi energy and determines the spin configuration of the ground state inGround-state calculations based on current spin density-functional theory for circular parabolic quantum dots are presented which reveal interesting spin effects in dependence on an external magnetic field: Hund's first rule (well-known from atomic physics for zero magnetic field) is related to the level occupancy near the Fermi energy and determines the spin configuration of the ground state in finite magnetic field. Consequently, the addition spectrum of the quantum dot exhibits a specific non-monotonous dependence on magnetic field, which is visible in recent quantum transport experiments.show moreshow less

Export metadata

Additional Services

Share in Twitter Search Google Scholar Statistics
Metadaten
Author:Oliver SteffensOTHORCiDGND, Michael Suhrke, Ulrich Rössler
DOI:https://doi.org/10.1016/S0921-4526(98)00557-2
Parent Title (German):Physica B
Document Type:Article
Language:English
Year of first Publication:1998
Release Date:2021/10/06
Tag:Current spin density-functional theory; Exchange correlation; Quantum dot
Volume:256-258
First Page:147
Last Page:151
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/2085
Einverstanden ✔
Diese Webseite verwendet technisch erforderliche Session-Cookies. Durch die weitere Nutzung der Webseite stimmen Sie diesem zu. Unsere Datenschutzerklärung finden Sie hier.