Phase diagrams of electronic state on One Dimensional d-p Model
Abstract
We investigate the one-dimensional(1D) d-p model, simulating a Cu-O linear chain with strong Coulomb repulsion, by using the numerical diagonalization method. Using the Luttinger liquid theory, we obtained phase diagrams of the ground state on plane, where and represent on-site interaction at d-sites and the nearest-neighbor interaction between p- and d-sites respectively. In the weak coupling region, they agree with the g-ology; a superconducting phase (SC(I)) is restricted to attractive interaction . On the other hand, in the strong coupling region, we found a novel superconducting phase(SC(II)) for repulsive interaction and a insulating state with a charge gap for and with critical values and at half-filling. Away from half-filling, another superconducting phase (SC(III)) appears for ; which has been found for in the previous paper [Physica {\bf C205} (1993) 170]. An analysis of the spin gap suggests that the SC(I) and SC(II) include the Luther-Emery region (with spin-gap) in part, while the SC(III) belongs to Tomonaga-Luttinger region (without spin-gap) in whole.
Keywords
Cite
@article{arxiv.cond-mat/9407048,
title = {Phase diagrams of electronic state on One Dimensional d-p Model},
author = {Kazuhiro Sano and Yoshiaki Ōno},
journal= {arXiv preprint arXiv:cond-mat/9407048},
year = {2016}
}
Comments
11 pages, 5 figures available