Study of ARPES data and d-wave superconductivity using electronic models in two dimensions
Abstract
We review the results of an extensive investigation of photoemission spectral weight using electronic models for the high-Tc superconductors. Here we show that some recently reported unusual features of the cuprates namely the presence of (i) flat bands, (ii) small quasiparticle bandwidths, and (iii) antiferromagnetically induced weight, have all a natural explanation within the context of holes moving in the presence of robust antiferromagnetic correlations. Introducing interactions among the hole carriers, a model is constructed which has superconductivity, an optimal doping of (caused by the presence of a large density of states at the top of the valence band), and a critical temperature .
Cite
@article{arxiv.cond-mat/9507017,
title = {Study of ARPES data and d-wave superconductivity using electronic models in two dimensions},
author = {A. Moreo and A. Nazarenko and S. Haas and A. Sandvik and E. Dagotto},
journal= {arXiv preprint arXiv:cond-mat/9507017},
year = {2009}
}
Comments
11 pages Z-compressed postscript, to appear in the Proceedings to the Stanford Conference on Spectroscopies in Novel superconductors