English

Phase diagrams of electronic state on One Dimensional d-p Model

Condensed Matter 2016-08-14 v1

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 UdUpdU_d-U_{pd} plane, where UdU_d and UpdU_{pd} 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 Upd<0U_{pd}<0. On the other hand, in the strong coupling region, we found a novel superconducting phase(SC(II)) for repulsive interaction Upd>UdU_{pd}>|U_d| and a insulating state with a charge gap for Ud>UdcU_d>U_d^c and Upd>UpdcU_{pd}>U_{pd}^c with critical values UdcU_d^c and UpdcU_{pd}^c at half-filling. Away from half-filling, another superconducting phase (SC(III)) appears for Ud>>Upd>0U_d>>U_{pd}>0; which has been found for UdU_d\to \infty 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