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Phys. Rev. Lett. 103, 166402 (2009) [4 pages]

Density-Functional Theory for Strongly Interacting Electrons

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Paola Gori-Giorgi1,2, Michael Seidl3, and G. Vignale4
1Laboratoire de Chimie Théorique, CNRS, Université Pierre et Marie Curie, 4 Place Jussieu, 75252 Paris, France
2Afdeling Theoretische Chemie, Vrije Universiteit, De Boelelaan 1083, 1081 HV Amsterdam, The Netherlands
3Institute of Theoretical Physics, University of Regensburg, 93040 Regensburg, Germany
4Department of Physics and Astronomy, University of Missouri, Columbia, Missouri 65211, USA

Received 5 August 2009; published 12 October 2009

See accompanying Physics Synopsis

We present an alternative to the Kohn-Sham formulation of density-functional theory for the ground-state properties of strongly interacting electronic systems. The idea is to start from the limit of zero kinetic energy and systematically expand the universal energy functional of the density in powers of a “coupling constant” that controls the magnitude of the kinetic energy. The problem of minimizing the energy is reduced to the solution of a strictly correlated electron problem in the presence of an effective potential, which in our theory plays the same role as the Kohn-Sham potential plays in the traditional formulation. We discuss several schemes for approximating the energy functional, and report preliminary results for low-density quantum dots.

© 2009 The American Physical Society

URL:
http://link.aps.org/doi/10.1103/PhysRevLett.103.166402
DOI:
10.1103/PhysRevLett.103.166402
PACS:
71.15.Mb, 73.21.La