Possibility of f-wave spin-triplet superconductivity in the CoO superconductor: a case study on a 2D triangular lattice in the repulsive Hubbard model
arXiv:cond-mat/0308472 · doi:10.1143/JPSJ.73.17
Abstract
Stimulated by the recent finding of NaCoO.1.3HO superconductor, we investigate superconducting instabilities on a 2D triangular lattice in the repulsive Hubbard model. Using the third-order perturbation expansion with respect to the on-site repulsion , we evaluate the linearized Dyson-Gor'kov equation. We find that an -wave spin-triplet pairing is the most stable in a wide range of the next nearest neighbor hopping integral and an electron number density . The introduction of is crucial to adjust the van Hove singularities to the neighborhood of the Fermi surface crossing around K point. In this case, the bare spin susceptibility shows the broad peak around point. These conditions stabilize the -wave pairing. Although the -wave pairing is also given by the fluctuation-exchange approximation, the transition temperature is too low to be observed. This is because the depairing effect by the spin fluctuation is over-estimated. Thus, the third-order vertex corrections are important for the spin-triplet superconductivity, like the case in SrRuO.
4 pages, 7 figures