Ground state and collective excitations of quantum dots: Correlation effects and Hund’s rule in magnetic field

  • We review ground-state properties and collective excitations of semiconductor quantum dots in a magnetic field obtained from current-spin density-functional theory. Due to exchange-correlation, a generalized Hund’s rule in magnetic field can be established which leads to spin alignment in partially occupied energy shells at the Fermi energy. This results, in distinct spin structures inWe review ground-state properties and collective excitations of semiconductor quantum dots in a magnetic field obtained from current-spin density-functional theory. Due to exchange-correlation, a generalized Hund’s rule in magnetic field can be established which leads to spin alignment in partially occupied energy shells at the Fermi energy. This results, in distinct spin structures in single-electron addition spectra. Current-dependent exchange-correlation modifies the magnetic-field dependence of the ground state configuration and leads to deviations from plain spin-density calculations. Moreover it gives rise to spontaneous current textures at zero magnetic field. Collective excitation spectra, explicitly calculated for inelastic light scattering, exhibit novel features in their magnetic field dependence due to a finite ground-state spin density.show moreshow less

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Metadaten
Author:Oliver SteffensOTHORCiDGND, Michael Suhrke, Ulrich Rössler
DOI:https://doi.org/10.1007/BFb0107469
ISBN:978-3-540-44553-1
Parent Title (English):Advances in Solid State Physics
Publisher:Friedr. Vieweg & Sohn
Place of publication:Braunschweig
Editor:Bernhard Kramer
Document Type:Part of a Book
Language:English
Year of first Publication:1999
Release Date:2021/09/15
Tag:Addition Spectrum; Collective Excitation; Fermi Energy; Inelastic Light Scattering; Spin Density
Volume:39
First Page:111
Last Page:120
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/2049
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