Unconventional pairing originating from disconnected Fermi surfaces in superconducting LaFeAsOF}
arXiv:0803.3325 · doi:10.1103/PhysRevLett.101.087004
Abstract
For a newly discovered iron-based high superconductor LaFeAsOF, we have constructed a minimal model, where inclusion of all the five Fe bands is found to be necessary. Random-phase approximation is applied to the model to investigate the origin of superconductivity. We conclude that the multiple spin fluctuation modes arising from the nesting across the disconnected Fermi surfaces realize an extended s-wave pairing, while d-wave pairing can also be another candidate.
5 pages, 2 figures, to be published in Phys. Rev. Lett
References in corpus (5)
- LaFeAsOF: A low carrier density superconductor near itinerant magnetism
- Is LaOFFeAs an electron-phonon superconductor ?
- Doping-dependent Phase Diagram of LaO{\it M}As ({\it M}=V--Cu) and Electron-type Superconductivity near Ferromagnetic Instability
- Hall effect and magnetoresistance in the normal state of the superconductor LaOFFeAs
- Upper critical field, Hall effect and magnetoresistance in the iron-based layered superconductor LaFeAsO_{0.9}F_{0.1-δ}
Cited by in corpus (11)
- Density functional study of FeS, FeSe and FeTe: Electronic structure, magnetism, phonons and superconductivity
- Magnetism, superconductivity, and pairing symmetry in Fe-based superconductors
- Theory of magnetic excitations in iron-based layered superconductors
- NMR relaxation rate in superconducting pnictides: extended scenario
- Spin Ordering in LaOFeAs and Its Suppression in Superconductor LaO0.89F0.11FeAs Probed by Mössbauer Spectroscopy
- Nuclear magnetic relaxation and superfluid density in Fe-pnictide superconductors: An anisotropic \pm s-wave scenario
- Scanning tunneling spectroscopy of SmFeAsO0.85: Possible evidence for d-wave order parameter symmetry
- Multiple Gaps and Superfluid Density from Interband Pairing in Iron Oxypnictides
- Orbital fluctuation mechanism for superconductivity in iron-based compounds
- Effective Hamiltonian for FeAs based superconductors
- Doping evolution of itinerant magnetic excitations in Fe-based oxypnictides