Abstract:
We investigate the effect of the intersite Coulomb interaction in a planar system with the triangular lattice on the structure of chiral order parameter Δ(p) in the phase of coexisting superconductivity and noncollinear 120∘ magnetic ordering. It has been established that the Coulomb correlations in this phase initiate the state where the quasi-momentum dependence Δ(p) can be presented as a superposition of the chiral invariants corresponding to the dx2−y2+idxy and px+ipy symmetry types. It is demonstrated that the inclusion of the Coulomb interaction shifts the Δ(p) nodal point positions and, thereby, changes the conditions for a quantum topological transition.
Citation:
V. V. Val'kov, A. O. Zlotnikov, “Effect of the intersite Coulomb interaction on chiral superconductivity at the noncollinear spin ordering”, Fizika Tverdogo Tela, 59:11 (2017), 2100–2106; Phys. Solid State, 59:11 (2017), 2120–2126