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Compressibility of the Two-Dimensional infinite-U Hubbard Model

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arxiv cond-mat/9904235 v2 pith:GHY46CPX submitted 1999-04-16 cond-mat.str-el

Compressibility of the Two-Dimensional infinite-U Hubbard Model

classification cond-mat.str-el
keywords compressibilityphaseeffectsenergyhubbardmodelcalculatecoherent
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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abstract

We study the interactions between the coherent quasiparticles and the incoherent Mott-Hubbard excitations and their effects on the low energy properties in the $U=\infty$ Hubbard model. Within the framework of a systematic large-N expansion, these effects first occur in the next to leading order in 1/N. We calculate the scattering phase shift and the free energy, and determine the quasiparticle weight Z, mass renormalization, and the compressibility. It is found that the compressibility is strongly renormalized and diverges at a critical doping $\delta_c=0.07\pm0.01$. We discuss the nature of this zero-temperature phase transition and its connection to phase separation and superconductivity.

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