Superconductivity, charge orderings and phase separations in systems with local electron pairing

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Abstract

We study two effective models developed for description of superconductors with short-coherence length: (i) the extended Hubbard model with on-site attraction and intersite repulsion, (ii) the model of hard-core charged bosons on a lattice. The analysis is concentrated on the problem of phase separations and competition between superconductivity (SS) and charge-density-wave (CDW) orderings. The phase diagrams of the systems are shown to consist of at least seven different states, including 3 types of phase separated (PS) states: CDW-SS (PS1), CDW-normal (PS2) and the state of electron droplets (PS3). By taking into account the PS states and the effects of longer-range density-density interactions (beyond nearest neighbors) our paper substantially generalizes and modifies the conclusions of previous papers concerning the models considered.

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Robaszkiewicz, S., & Pawlowski, G. (1996). Superconductivity, charge orderings and phase separations in systems with local electron pairing. Acta Physica Polonica A, 90(3), 569–586. https://doi.org/10.12693/APhysPolA.90.569

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