paper

Hidden anomalous Hall effect in SrRuO with chiral superconductivity dominated by the Ru orbital

arXiv:2009.00034 · doi:10.1103/PhysRevB.102.180509

Abstract

The polar Kerr effect in superconducting SrRuO implies finite ac anomalous Hall conductivity. Since intrinsic anomalous Hall effect (AHE) is not expected for a chiral superconducting pairing developed on the single Ru orbital, multiorbital chiral pairing actively involving the Ru and orbitals has been proposed as a potential mechanism. Here we propose that AHE could still arise even if the chiral superconductivity is predominantly driven by the orbital. This is demonstrated through two separate models which take into account subdominant orbitals in the Cooper pairing, one involving the oxygen and orbitals in the RuO plane, and another the and orbitals. In both models, finite orbital mixing between the dominant and the other orbitals may induce inter-orbital pairing between them, and the resultant states support intrinsic AHE, with Kerr rotation angles that could potentially reconcile with the experimental observation. Our proposal therefore sheds new light on the microscopic pairing in SrRuO. We also show that intrinsic Hall effect is generally absent for non-chiral states such as , and , which provides a clear constraint on the symmetry of the superconducting order in this material.

6 pages + supplementary. Revised abstract and parts of introductory section