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Orbital-dependent self-energy effects and consequences for the superconducting gap structure in multiorbital correlated electron systems

Authors :
Andreas Kreisel
A. T. Rømer
Kristofer Björnson
Brian M. Andersen
Source :
Bjornson, K, Kreisel, A, Romer, A T & Andersen, B M 2021, ' Orbital-dependent self-energy effects and consequences for the superconducting gap structure in multiorbital correlated electron systems ', Physical Review B, vol. 103, no. 2, 024508 . https://doi.org/10.1103/PhysRevB.103.024508
Publication Year :
2021

Abstract

We perform a theoretical study of the effects of electronic correlations on the superconducting gap structure of multi-band superconductors. In particular, by comparing standard RPA-based spin-fluctuation mediated gap structures to those obtained within the FLEX formalism for an iron-based superconductor, we obtain directly the feedback effects from electron-electron interactions on the momentum-space gap structure. We show how self-energy effects can lead to an orbital inversion of the orbital-resolved spin susceptibility, and thereby invert the hierarchy of the most important orbitals channels for superconducting pairing. This effect has important consequences for the detailed gap variations on the Fermi surface. We expect such self-energy feedback on the pairing gap to be generally relevant for superconductivity in strongly correlated multi-orbital systems.<br />8 pages, 5 figures

Details

Language :
English
Database :
OpenAIRE
Journal :
Bjornson, K, Kreisel, A, Romer, A T & Andersen, B M 2021, ' Orbital-dependent self-energy effects and consequences for the superconducting gap structure in multiorbital correlated electron systems ', Physical Review B, vol. 103, no. 2, 024508 . https://doi.org/10.1103/PhysRevB.103.024508
Accession number :
edsair.doi.dedup.....6bdd948fb950d83d6472d9e1acc612df