Fragility of topological invariant characterizing triplet excitations in a bilayer kagome magnet
arXiv:2012.11765 · doi:10.1103/PhysRevB.104.104412
Abstract
The discovery by Kane and Mele of a model of spinful electrons characterized by a topological invariant had a lasting effect on the study of electronic band structures. Given this, it is natural to ask whether similar topology can be found in the band-like excitations of magnetic insulators, and recently models supporting topological invariants have been proposed for both magnon [Kondo et al. Phys. Rev. B 99, 041110(R) (2019)] and triplet [D. G. Joshi and A. P. Schnyder, Phys. Rev. B 100, 020407 (2019)] excitations. In both cases, magnetic excitations form time--reversal (TR) partners, which mimic the Kramers pairs of electrons in the Kane-Mele model but do not enjoy the same type of symmetry protection. In this paper, we revisit this problem in the context of the triplet excitations of a spin model on the bilayer kagome lattice. Here the triplet excitations provide a faithful analog of the Kane-Mele model as long as the Hamiltonian preserves the TRU(1) symmetry. We find that exchange anisotropies, allowed by the point group and typical in realistic models, break the required TRU(1) symmetry and instantly destroy the band topology. We further consider the effects of TR breaking by an applied magnetic field. In this case, the lifting of spin-degeneracy leads to a triplet Chern insulator, which is stable against the breaking of TRU(1) symmetry. Kagome bands realize both a quadratic and a linear band touching, and we provide a thorough characterization of the Berry curvature associated with both cases. We also calculate the triplet-mediated spin Nernst and thermal Hall signals which could be measured in experiments. These results suggest that the topology of band-like excitations in magnets may be intrinsically fragile compared to their electronic counterparts.
19 pages, 16 figures
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Cited by in corpus (7)
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- Dirac surface states in magnonic analogs of topological crystalline insulators
- Spin waves and orbital contribution to ferromagnetism in a topological metal
- Electric field induced thermal Hall effect of triplons in the quantum dimer magnets CuCl ( Tl, K)
- Pinch points and half moons encode Berry curvature
- Spin Nernst and thermal Hall effects of topological triplons in quantum dimer magnets on the maple-leaf and star lattices
- Fate of Bosonic Topological Edge Modes in the Presence of Many-Body Interactions