Physical Review Letters · 2011 · 130 citations · 19 references
Superconducting MaterialEngineeringBismuth-based SuperconductorsFunctional Renormalization GroupElectronic StructureSemiconductorsNovel SuperconductorsSuperconductivity NodelessSuperconductivityQuantum MaterialsNodal SuperconductivityHigh Tc SuperconductorsHigh-tc SuperconductivityPhysicsOrder ParametersFep-based Pnictide SuperconductorsSolid-state PhysicApplied PhysicsCondensed Matter Physics
We put forward a scenario that explains the difference between the order-parameter character in arsenide (As) and phosphorous (P) iron-based superconductors. Using functional renormalization group to analyze it in detail, we find that nodal superconductivity on the electron pockets (hole pocket gaps are always nodeless) can naturally appear when the hole pocket at (π,π) in the unfolded Brillouin zone is absent, as is the case in LaOFeP. There, electron-electron interactions render the gap on the electron pockets softly nodal (of s(±) form). When the pocket of d(xy) orbital character is present, intraorbital interactions with the d(xy) part of the electron Fermi surface drives the superconductivity nodeless.
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Yoichi Kamihara, Takumi Watanabe, Masahiro Hirano et al. · Journal of the American Chemical Society · 2008 · 7.7K citations
Superconducting Material, Magnetic Properties, Engineering +18