paper

Phase Diagram of a Model of Correlated Hopping of Electrons in a Lattice of Berry Molecules

arXiv:cond-mat/9511093 · doi:10.1103/PhysRevB.53.828

Abstract

The phase diagram of a model for correlated hopping of electrons in a lattice of Berry phase molecules is presented. Electrons hop in presence of an extra orbital degree of freedom at each site. This is mimicked as a spin-1 variable whose allowed states depend on the electron occupancy so as to take into account the orbital degeneracies of different molecular occupancies. In the case we find that at low electron densities there is a region with dominant superconducting correlations surviving an additional repulsive on-site interaction as strong as the bandwidth, . The critical value of below which superconductivity is found to be dominant decreases with increasing density . For we find , whereas at (half-filling) our (less accurate) results are compatible with . For and away from half-filling () the system is metallic with dominant charge density wave (CDW) correlations. At half-filling a charge gap opens for and the system becomes an insulator. A spin-gap characterizes the phase-diagram for all densities and for all values of , even in the metallic regime .

Revtex + uuencoded figures, to appear in Physical Review B (Jan. 96)