Electronic orders near the type-II van Hove singularity in BC3

Abstract

Using the functional renormalization group, we investigate the electron instability in the single-sheet BC3 when the electron filling is near a type-II van Hove singularity. For a finite Hubbard interaction, the ferromagnetic-like spin density wave order dominates in the immediate vicinity of the singularity. Elsewhere near the singularity the p-wave superconductivity prevails. We also find that a small nearest-neighbor Coulomb repulsion can enhance the superconductivity. Our results show that BC3 would be a promising candidate to realize topological p+ip' superconductivity, but the transition temperature is practically sizable only if the local interaction is moderately strong.

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