Journal article
Unconventional superconductivity in the extended Hubbard model: Weak-coupling renormalization group
S Wolf, TL Schmidt, S Rachel
Physical Review B | AMER PHYSICAL SOC | Published : 2018
Abstract
We employ the weak-coupling renormalization group approach to study unconventional superconducting phases emerging in the extended, repulsive Hubbard model on paradigmatic two-dimensional lattices. Repulsive interactions usually lead to higher-angular momentum Cooper pairing. By considering not only longer-ranged hoppings, but also nonlocal electron-electron interactions, we are able to find superconducting solutions for all irreducible representations on the square and hexagonal lattices, including extended regions of chiral topological superconductivity. For the square, triangular and honeycomb lattices, we provide detailed superconducting phase diagrams as well as the coupling strengths w..
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Awarded by Australian Research Council
Funding Acknowledgements
We acknowledge instructive discussions with R. Thomale, M. Fink, and M. Klett. S.R. acknowledges an Australian Research Council Future Fellowship (FT180100211). T.L.S. acknowledges support by the Fonds National de la Recherche Luxembourg under grants ATTRACT 7556175 and INTER 11223315. This research was undertaken using the HPC facility Spartan hosted at the University of Melbourne.