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Effective action for phase fluctuations in d-wave superconductorsnear a Mott transition
Authors:D. Bensimon  R. Zeyher
Affiliation:1.Max-Planck-Institut für Festk?rperforschung,Stuttgart,Germany
Abstract:Phase fluctuations of a d-wave superconducting order parameter are theoretically studied in the context of high-Tc cuprates. We consider an extended t-J model describing electrons in a layer which also contains long-range Coulomb interactions. The constraint of having at most singly occupied sites is enforced by an additional Hubbard term. The Heisenberg interaction is decoupled by a d-wave order parameter in the particle-particle channel. Assuming first that the equilibrium state has long-range phase order, the effective action $mathcal{S}_textit{eff}$ is derived perturbatively for small fluctuations within a path integral formalism, in the presence of the Coulomb and Hubbard interaction terms. In a second step, a more general derivation of $mathcal{S}_textit{eff}$ is performed in terms of a gradient expansion which only assumes that the gradients of the order parameter are small whereas the value of the phase may be large. We show that in the phase-only approximation the resulting $mathcal{S}_textit{eff}$ reduces in leading order in the field gradients to the perturbative one which thus allows to treat also the case without long-range phase order or vortices. Our result generalizes previous expressions for $mathcal{S}_textit{eff}$ to the case of interacting electrons, is explicitly gauge invariant, and avoids problematic singular gauge transformations.
Keywords:74.40.+k Fluctuations (noise, chaos, nonequilibrium superconductivity, localization, etc.)  74.72.-h Cuprate superconductors (high-Tc and insulating parent compounds)  74.25.Jb Electronic structure  74.25.Dw Superconductivity phase diagrams
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