Theoretical investigation of the superconducting pairing symmetry in a bilayer two-orbital model of pressurized LaNiO
arXiv:2412.11429 · doi:10.1088/1361-648X/add6fc
Abstract
We investigate the superconducting pairing symmetry in pressurized LaNiO based on a bilayer two-orbital model. There are two symmetric bands and , as well as two antisymmetric ones and . It is found that the band induces considerable ferromagnetic spin fluctuation and prefers an odd-frequency, -wave spin triplet pairing state. The addition of the other bands gradually suppresses the ferromagnetic spin fluctuation and enhances the antiferromagnetic ones. The superconducting pairing then evolves from a spin triplet into a -wave spin singlet, and finally into an -wave one. The competition between the -wave and -wave pairings relies on whether the ferromagnetic spin fluctuation is suppressed completely or not.
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