A layering model for superconductivity in the borocarbides
arXiv:cond-mat/0311173 · doi:10.1088/0953-8984/15/46/010
Abstract
We propose a superlattice model to describe superconductivity in layered materials, such as the borocarbide families with the chemical formulæ BC and BC, with being (essentially) a rare earth, and a transition metal. We assume a single band in which electrons feel a local attractive interaction (negative Hubbard-) on sites representing the B layers, while U=0 on sites representing the C layers; the multi-band structure is taken into account minimally through a band offset . The one-dimensional model is studied numerically through the calculation of the charge gap, the Drude weight, and of the pairing correlation function. A comparison with the available information on the nature of the electronic ground state (metallic or superconducting) indicates that the model provides a systematic parametrization of the whole borocarbide family.
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