Published August 1997 | Version v1
Journal article

Configuration interaction and pairing in superconducting cuprates

  • 1. INFM, Rome (Italy)
  • 2. Los Alamos National Laboratory, Los Alamos (United States). Theoretical Division

Description

They propose a quantum-mechanical effect specific of the symmetry of the Cu O plane of cuprate superconductors. The mechanism considers hole pairs in single-particle degenerate states which, because of the configuration interaction, form singlet states with zero on-site repulsion (W = 0 pairs). In the many-body problem the effective interaction due to the spin exchange with the holes of b1 symmetry is attractive. The exact diagonalization of the extended Hubbard Hamiltonian with 4 holes using well-established parameters for several clusters shows that the ground state has B2 (x y) symmetry and that binding energies are of the order of 10 me V. Unlike other electronic mechanisms proposed so far, this effect is due to the symmetry of the system and does not rely on off-site interactions; when the symmetry is broken the repulsion wins. Besides the correct symmetry of the pair, they obtain good agreement with experiment for the binding energies and the singlet-triplet energy separation of the quasiparticles

Additional details

Publishing Information

Journal Title
Nuovo Cimento. D
Journal Volume
19D
Journal Issue
8-9
Journal Page Range
p. 1329-1334.
ISSN
0392-6737
CODEN
NCSDDN