Hubbard Model on Decorated Lattices

Abstract

We introduce a family of lattices for which the Hubbard model and its natural extensions can be quasi-exactly solved, i.e. solved for the ground and low energy states. In particular, we show rigorously that the ground state of the Hubbard model with off-site Coulomb repulsions on a decorated Kagom\`e lattice is an ordered array of local currents. The low energy theory describing this chiral state is an S=1/2 XY model, where each spin degree of freedom represents the two possible chiralities of each local current.

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