Some results on the phase diagram of the 2D Hubbard model using an analytic Lanczos method

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Abstract

Aspects of the ground state phase diagram of the two-dimensional Hubbard model have been determined using a new non-perturbative method based on an analytic formulation of the Lanczos algorithm. The ground state energy for arbitrary repulsion U/t and density n has been calculated using a number of trial states which are expected to be qualitatively correct in certain regimes of this model – the paramagnetic Fermi sea and the Hartree–Fock spin density wave state. We find large corrections to the mean-field result that shift the paramagnetic–ferromagnetic transition to higher values of U/t and closer to half-filling.

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