Quantum fluctuations preserve coexistence of chiral superconductivity and 120° spin order with N3 topology on the triangular lattice; fluctuations shift topological transition densities and intersite repulsion reduces their number.
The electronic ensemble on the triangular lattice is studied in the framework of the Hubbard model with mean- field [32] and slave-boson [33] approximations
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Stability of the coexistence phase of chiral superconductivity and noncollinear spin ordering with a nontrivial topology and strong electron correlations
Quantum fluctuations preserve coexistence of chiral superconductivity and 120° spin order with N3 topology on the triangular lattice; fluctuations shift topological transition densities and intersite repulsion reduces their number.