On superconducting and magnetic properties of iron-oxypnictides
arXiv:0806.1933 · doi:10.1134/S0021364008140130
Abstract
Pairing symmetry in oxypnictides, a new family of multiband high-Tc superconductors, is partially imposed by the positions of multiple Fermi pockets, which itself can give rise to new order parameters, such as s+,- states or the state of dx^2-y^2 symmetry. Other pairing states may appear on small pockets for long range interactions, but they are expected to be sensitive to defects. We identify the competing antiferromagnetic order with the triplet exciton transition in the semi- metallic background and discuss whether its coexistence with superconductivity explains the doping dependence of Tc.
Fig1b replaced
References in corpus (2)
Cited by in corpus (10)
- Magnetism, superconductivity, and pairing symmetry in Fe-based superconductors
- High - Temperature Superconductivity in Iron Based Layered Compounds
- Momentum dependence and nodes of the superconducting gap in iron-pnictides
- Origin of Gap Anisotropy in Spin Fluctuation Models of the Fe-pnictides
- Superfluid density and penetration depth in Fe-pnictides
- Effects of cobalt doping and three-dimensionality in
- The role of striction at magnetic and structural transitions in iron-pnictides
- Excitonic spin density wave state in iron pnictides
- Magnetic impurities in the two-band -wave superconductors
- Magnetic field-induced gapless state in multiband superconductors