Many-body wave function for a quantum dot in a weak magnetic field

A. Harju, V. A. Sverdlov, R. M. Nieminen, and V. Halonen
Phys. Rev. B 59, 5622 – Published 15 February 1999
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Abstract

The ground states of parabolically confined electrons in a quantum dot are studied by both direct numerical diagonalization and quantum Monte Carlo (QMC) methods. We present a simple but accurate variational many-body wave function for the dot in the limit of a weak magnetic field. The wave function has the center-of-mass motion restricted to the lowest-energy state and the electron-electron interaction is taken into account by a Jastrow two-body correlation factor. The optimized wave function has an accuracy very close to the state-of-the-art numerical diagonalization calculations. The results and the computational efficiency indicate that the presented wave function combined with the QMC method suits ideally for studies of large quantum dots.

  • Received 21 October 1998

DOI:https://doi.org/10.1103/PhysRevB.59.5622

©1999 American Physical Society

Authors & Affiliations

A. Harju*, V. A. Sverdlov, and R. M. Nieminen

  • Laboratory of Physics, Helsinki University of Technology, FIN-02150 Espoo, Finland

V. Halonen

  • Theoretical Physics, University of Oulu, FIN-90570 Oulu, Finland

  • *Electronic address: Ari.Harju@hut.fi
  • Permanent address: Department of Theoretical Physics, University of St. Petersburg, Universitetskaya 7/9, 199034 St. Petersburg, Russia.

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Issue

Vol. 59, Iss. 8 — 15 February 1999

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