paper

Ground States of the Falicov-Kimball model with correlated hopping

arXiv:cond-mat/0106200 · doi:10.1103/PhysRevB.64.233103

Abstract

Two-dimensional spinless Falicov-Kimball model (FKM) with correlated hopping is studied perturbatively in the limit of large on-site Coulomb interaction . In the neutral case the effective Hamiltonian in spin variables is derived up to terms proportional to . Unlike the simplest FKM case, it contains odd parity terms (resulting from the correlated hopping) in addition to even parity ones. The ground-state phase diagram of the effective Hamiltonian is examined in the plane, where is a parameter characterizing strength of the correlated hopping and is a difference of chemical potentials of two sorts of particles present in the system. It appears to be asymmetric with respect to the change and a new ordered phase is found for a certain interval of .

4 pages, RevTeX, 2 figures, references added, typos corrected

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