Polar Charge Fluctuation and Superconductivity in Organic Conductor
arXiv:1212.4228 · doi:10.1103/PhysRevB.87.085133
Abstract
Superconductivity and polar charge fluctuation are studied in an organic conductor with the dimer-molecule degree of freedom. The extended Hubbard models, where the intra-dimer electronic structure and the inter-dimer Coulomb interactions are taken into account, are analyzed by the random-phase approximation and the fluctuation-exchange approximation. Superconductivity appears in a vicinity of the charge-density wave (CDW) phase where the electronic charge distributions are polarized inside of dimers. The extended s-wave type paring is favored and its competitive relations with the superconductivity due to the spin fluctuation depends on the triangular lattice geometry. Comparison between two superconductivities realized near the polar and non-polar CDW phases are also presented.
6 pages, 6 figures
References in corpus (3)
- Mott Transition, Antiferromagnetism, and d-wave Superconductivity in Two-Dimensional Organic Conductors
- Superconductivity and a Mott Transition in a Hubbard Model on an Anisotropic Triangular Lattice
- Effect of Nonmagnetic Impurity in Nearly Antiferromagnetic Fermi Liquid: Magnetic Correlations and Transport Phenomena
Cited by in corpus (6)
- Fulde-Ferrell-Larkin-Ovchinnikov state induced by antiferromagnetic order in -type organic conductors
- Phase Competition and Superconductivity in -(BEDT-TTF)X: Importance of Intermolecular Coulomb Interactions
- Ingredients for Generalized Models of -Phase Organic Charge-Transfer Salts: A Review
- Altermagnetism from coincident Van Hove singularities: application to -Cl
- Antiferromagnetic State in -type Molecular Conductors: Spin Splitting and Mott Gap
- Materials Design of Superconductivity in Nickelates