Anisotropy of magnetic interactions and symmetry of the order parameter in unconventional superconductor SrRuO
arXiv:1702.03784 · doi:10.1038/s41535-017-0041-8
Abstract
SrRuO is the best candidate for spin-triplet superconductivity, an unusual and elusive superconducting state of fundamental importance. In the last three decades SrRuO has been very carefully studied and despite its apparent simplicity when compared with strongly correlated high- cuprates, for which the pairing symmetry is understood, there is no scenario that can explain all the major experimental observations, a conundrum that has generated tremendous interest. Here we present a density-functional based analysis of magnetic interactions in SrRuO and discuss the role of magnetic anisotropy in its unconventional superconductivity. Our goal is twofold. First, we access the possibility of the superconducting order parameter rotation in an external magnetic field of 200 Oe, and conclude that the spin-orbit interaction in this material is several orders of magnitude too strong to be consistent with this hypothesis. Thus, the observed invariance of the Knight shift across has no plausible explanation, and casts doubt on using the Knight shift as an ultimate litmus paper for the pairing symmetry. Second, we propose a quantitative double-exchange-like model for combining itinerant fermions with an anisotropic Heisenberg magnetic Hamiltonian. This model is complementary to the Hubbard-model-based calculations published so far, and forms an alternative framework for exploring superconducting symmetry in SrRuO As an example, we use this model to analyze the degeneracy between various triplet states in the simplest mean-field approximation, and show that it splits into a single and two doublets with the ground state defined by the competition between the "Ising" and "compass" anisotropic terms.
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- Reduction of the spin susceptibility in the superconducting state of Sr2RuO4 observed by polarized neutron scattering
- Higher-order topological superconductivity: possible realization in Fermi gases and SrRuO
- Magnetic response of SrRuO: quasi-local spin fluctuations due to Hund's coupling
- Parametrization of LSDA+ for noncollinear magnetic configurations: Multipolar magnetism in UO
- Converged GW quasiparticle energies for transition metal oxide perovskites
- Possible three-dimensional nematic odd-parity superconductivity in SrRuO
- Normal state O NMR studies of SrRuO under uniaxial stress
- Spin-orbit coupling and correlations in three-orbital systems
- Pressure evolution of electronic structure and magnetism in the layered van der Waals ferromagnet CrGeTe
- Competing magnetic interactions in spin-1/2 square lattice: hidden order in SrVO
- Suppressed fluctuations as the origin of the static magnetic order in strained SrRuO
- SrRuO-SrTiO heterostructure as a possible platform for studying unconventional superconductivity in SrRuO
- Derivation of a Ginzburg-Landau free energy density containing mixed gradient terms of a superconductor with spin-orbit coupling
- Theoretical studies for identifying horizontal line nodes via angle-resolved density of states measurements ---Application to SrRuO---
- Cooper Pairing in A Doped 2D Antiferromagnet with Spin-Orbit Coupling
- Competing spin-fluctuations in SrRuO and their tuning through epitaxial strain