2019/05/24 by S. -O. Kaba, S.-O. Kaba, D. Sénéchal +1 · 2 citations
Materials Science · Mathematics · Physics and Astronomy · #Advanced Condensed Matter Physics #Basis (linear algebra) #Condensed matter physics #Coupling (piping) #Geometry #Group (periodic table) #Irreducible representation #Magnetic and transport properties of perovskites and related materials #Materials science #Mathematics #Pairing #Physics #Physics of Superconductivity and Magnetism #Point reflection #Quantum mechanics #Singlet state #Superconductivity #Symmetry (geometry) #Theoretical physics #cond-mat.supr-con
paper · pdf · doi:10.1103/physrevb.100.214507
published as Phys. Rev. B 100, 214507 (2019) · 16 pages, 6 figures
arxiv created 2019/05/24 · openalex created_date 2019/05/29 · openalex publication_date 2019/12/16 · arxiv updated 2019/12/25 · openalex updated_date 2026/08/05
The possible superconducting states of strontium ruthenate (Sr2RuO4) are organized into irreducible representations of the point group D4h, with a special emphasis on nodes occurring within the superconducting gap. Our analysis covers the cases with and without spin-orbit coupling and takes into account the possibility of interorbital pairing within a three-band, tight-binding description of Sr2RuO4. No dynamical treatment if performed: We are confining ourselves to a group-theoretical analysis. We nevertheless adopt an intermediate-coupling point of view by working in the orbital basis instead of the band basis. The case of uniaxial deformations, under which the point group symmetry is reduced to D2h, is also covered. It turns out that nodal lines, in particular equatorial nodal lines, occur in most representations. We also highlight some results specific to multiorbital superconductivity. Among other things, we find that odd interorbital pairing allows us to combine singlet and triplet superconductivity within the same irreducible representation, that pure interorbital superconductivity leads to nodal surfaces and that the notion of nodes imposed by symmetry is not clearly defined.