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      Ferromagnetism in multi--band Hubbard models: From weak to strong Coulomb repulsion

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          Abstract

          We propose a new mechanism which can lead to ferromagnetism in Hubbard models containing triangles with different on-site energies. It is based on an effective Hamiltonian that we derive in the strong coupling limit. Considering a one-dimensional realization of the model, we show that in the quarter-filled, insulating case the ground-state is actually ferromagnetic in a very large parameter range going from Tasaki's flat-band limit to the strong coupling limit of the effective Hamiltonian. This result has been obtained using a variety of analytical and numerical techniques. Finally, the same results are shown to apply away from quarter-filling, in the metallic case.

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          Two theorems on the Hubbard model.

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            Bethe-ansatz wave function, momentum distribution, and spin correlation in the one-dimensional strongly correlated Hubbard model

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              tUexpansion for the Hubbard model

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                Author and article information

                Journal
                06 March 1996
                Article
                10.1103/PhysRevB.54.4056
                cond-mat/9603042
                2fcc2ef8-fc7e-4297-aba8-77229edf3845
                History
                Custom metadata
                Phys. Rev. B 54, 4056 (1996)
                12 pages, revtex, 12 figures,needs epsf and multicol style files
                cond-mat

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