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Phys. Rev. B 75, 224509 (2007) [8 pages]

Pairing symmetry in a two-orbital Hubbard model on a square lattice

Katsunori Kubo
Advanced Science Research Center, Japan Atomic Energy Agency, Tokai, Ibaraki 319-1195, Japan
Received 26 December 2006; revised 21 February 2007; published 14 June 2007

We investigate superconductivity in a two-orbital Hubbard model on a square lattice by applying fluctuation exchange approximation. In the present model, the symmetry of the two orbitals are assumed to be that of an s orbital. Then, we find that an s-wave spin-triplet orbital-antisymmetric state and a p-wave spin-singlet orbital-antisymmetric state appear when Hund's rule coupling is large. These states are prohibited in a single-orbital model within states with even frequency dependence, but allowed for multiorbital systems. We also discuss pairing symmetry in other models which are equivalent to the two-orbital Hubbard model except for symmetry of orbitals. Finally, we show that pairing states with a finite total momentum, even without a magnetic field, are possible in a system with two Fermi surfaces.

©2007 The American Physical Society

URL: http://link.aps.org/doi/10.1103/PhysRevB.75.224509
DOI: 10.1103/PhysRevB.75.224509
PACS: 74.20.Rp; 74.20.Mn; 71.10.Fd
  • 74.20.Rp
    Pairing symmetries (other than s-wave) in superconductivity theory
  • 74.20.Mn
    Nonconventional mechanisms of superconductivity including spin fluctuations, polarons and bipolarons, resonating valence bond model, anyon mechanism, marginal Fermi liquid, Luttinger liquid, etc
  • 71.10.Fd
    Lattice fermion models (condensed matter) including Hubbard model, etc
  • YEAR: 2007
KEYWORDS: Hubbard model, Fermi surface

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