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Effects of momentum-dependent quasiparticle renormalization on the gap structure of iron-based superconductors...

by Shinibali Bhattacharyya, Peter Hirschfeld, Thomas A Maier, Douglas Scalapino
Publication Type
Journal
Journal Name
Physical Review B
Publication Date
Volume
101
Issue
17

We discuss the influence of momentum-dependent correlations on the superconducting gap structure in iron-based superconductors. Within the weak coupling approach including self-energy effects at the one-loop spin-fluctuation level, we construct a dimensionless pairing strength functional which includes the effects of quasiparticle renormalization. The stationary solution of this equation determines the gap function at Tc. The resulting equations represent the simplest generalization of spin fluctuation pairing theory to include the effects of an anisotropic quasiparticle weight. We obtain good agreement with experimentally observed anisotropic gap structures in LiFeAs, indicating that the inclusion of quasiparticle renormalization effects in the existing weak-coupling theories can account for the observed anomalies in the gap structure of Fe-based superconductors.