English

Charge Conjugation and Pairing in a model Cu$_{5}$O$_{4}$ Cluster

Superconductivity 2007-05-23 v1 Strongly Correlated Electrons

Abstract

Highly-symmetric three-band Hubbard Cu-O clusters have peculiar properties when the hole number is such that they admit W=0 hole pairs. These are two-hole eigenstates of the on-site Hubbard repulsion with eigenvalue 0, get bound by correlation effects when dressed by the interaction with the background, and cause superconducting flux quantization. We study the Cu5_{5}O4_{4} cluster by exact diagonalization and show that bound electron pairs of 1^{1}% B2_{2} symmetry are obtained at an appropriate filling, and quantize flux like the hole pairs. The basic mechanism for pairing in this model is the second-order exchange diagram, and an approximate charge conjugation symmetry holds between electron and hole pairs. Further, the flux quantization property requires that the W=0 pairs of dd symmetry have ss symmetry couterparts, still with W=0; the former are due to a spin fluctuation, while the latter arise from a charge fluctuation mechanism. The simultaneous existence of both is an essential property of our model and is required for any model of superconducting dd pairs.

Keywords

Cite

@article{arxiv.cond-mat/9811116,
  title  = {Charge Conjugation and Pairing in a model Cu$_{5}$O$_{4}$ Cluster},
  author = {Michele Cini and Adalberto Balzarotti and Gianluca Stefanucci},
  journal= {arXiv preprint arXiv:cond-mat/9811116},
  year   = {2007}
}

Comments

6 pages, 4 enbedded figures