Exact results for the spectra of interacting bosons and fermions on the lowest Landau level

Stefan Mashkevich 12, Sergey Matveenko 3, Stéphane Ouvry 4

Journal of Statistical Mechanics (2013) P02013

A system of N interacting bosons or fermions in a two-dimensional harmonic potential (or, equivalently, magnetic field) whose states are projected onto the lowest Landau level is considered. Generic expressions are derived for matrix elements of any interaction, in the basis of angular momentum eigenstates. For the fermion « ground state » (N=1 Laughlin state), this makes it possible to exactly calculate its energy all the way up to the mesoscopic regime N ~ 1000. It is also shown that for N = 3 and Coulomb interaction, several rational low-lying values of energy exist, for bosons and fermions alike.

  • 1 : Schrodinger
  • 2 : Bogolyubov Institute for Theoretical Physics
    Bogolyobov Institute for Theoretical Physics
  • 3 : Landau Institute for Theoretical Physics
    Landau Institute for Theoretical Physics
  • 4 : Laboratoire de Physique Théorique et Modèles Statistiques (LPTMS)
    CNRS : UMR8626 – Université Paris XI – Paris Sud
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