Pair correlation functions in one-dimensional correlated-hopping models
Condensed Matter
2009-10-28 v1
Abstract
We investigate ground-state properties of two correlated-hopping electron models, the Hirsch and the Bariev model. Both models are of recent interest in the context of hole superconductivity. Applying the Lanczos technique to small clusters, we numerically determine the binding energy, the spin gaps, correlation functions, and other properties for various values of the bond-charge interaction parameter. Our results for small systems indicate that pairing is favoured in a certain parameter range. However, in contrast to the Bariev model, superconducting correlations are suppressed in the Hirsch model, for a bond-charge repulsion larger than a critical value.
Cite
@article{arxiv.cond-mat/9505114,
title = {Pair correlation functions in one-dimensional correlated-hopping models},
author = {M. Quaisser and A. Schadschneider and J. Zittartz},
journal= {arXiv preprint arXiv:cond-mat/9505114},
year = {2009}
}
Comments
7 pages (LaTeX) + 6 postcript figures in a separate uuencoded file