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Portrait of Stephanie Reimann

Stephanie Reimann

Professor

Portrait of Stephanie Reimann

Electron correlation in metal clusters, quantum dots and quantum rings

Author

  • M. Manninen
  • Stephanie Reimann

Summary, in English

This paper presents a few case studies of finite electron systems for which strong correlations play a dominant role. In simple metal clusters, the valence electrons determine the stability and shape of the clusters. The ionic skeleton of alkali metals is soft, and cluster geometries are often solely determined by electron correlations. In quantum dots and rings, the electrons may be confined by an external electrostatic potential formed by a gated heterostructure. In the low-density limit, the electrons may form the so-called Wigner molecules, for which the many-body quantum spectra reveal the classical vibration modes. High rotational states increase the tendency for the electrons to localize. At low angular momenta, the electrons may form a quantum Hall liquid with vortices. In this case, the vortices act as quasi-particles with long-range effective interactions that localize in a vortex molecule, in much analogy with the electron localization at strong rotation.

Department/s

  • Mathematical Physics

Publishing year

2009

Language

English

Pages

214019-214019

Publication/Series

Journal of Physics A: Mathematical and Theoretical

Volume

42

Issue

21

Document type

Conference paper

Publisher

IOP Publishing

Topic

  • Physical Sciences

Conference name

International Conference on Strongly Coupled Coulomb Systems

Conference date

2008-07-29 - 2008-08-02

Conference place

Camerino, Italy

Status

Published

ISBN/ISSN/Other

  • ISSN: 1751-8113