Superconductivity Driven by the Interband Coulomb Interaction and Implications for the Superconducting Mechanism of MgB2
- 15 May 2001
- journal article
- Published by Physical Society of Japan in Journal of the Physics Society Japan
- Vol. 70 (5) , 1218-1221
- https://doi.org/10.1143/jpsj.70.1218
Abstract
Superconducting mechanism mediated by interband exchange Coulomb repulsion is examined in an extended two-band Hubbard models with a wide band crossing the Fermi level and coexisting with a narrower band located at moderately lower energy. We apply newly developed path-integral renormalization group method to reliably calculate pairing correlations. The correlation shows marked enhancement at moderate amplitudes of the exchange Coulomb repulsion taken smaller than the on-site repulsion for the narrower band. The pairing symmetry is s-wave while it has unconventional phases with the opposite sign between the order parameters on the two bands, in agreement with the mean-field prediction. Since the band structure of recently discovered superconductor MgB$_2$ shares basic similarities with our model, we propose that the present results provide a relevant clue for the understanding of the superconducting mechanism in MgB$_2$ as well as in this class of multi-band materials with good metallic conduction in the normal state.Comment: 4pages, 2figureKeywords
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This publication has 6 references indexed in Scilit:
- Superconductivity at 39 K in magnesium diborideNature, 2001
- Superconductivity from Flat Dispersion Designed in Doped Mott InsulatorsPhysical Review Letters, 2000
- Superconducting transition of the two-chain Hubbard model indicated by diagonalization calculationsPhysica C: Superconductivity and its Applications, 1994
- Superconducting Transition of Two-Dimensional Two-Band Systems with Exchange-Like InteractionJournal of the Physics Society Japan, 1990
- Possible highT c superconductivity in the Ba?La?Cu?O systemZeitschrift für Physik B Condensed Matter, 1986
- Superconductivity in Transition MetalsProgress of Theoretical Physics, 1963