Scattering Theory of Chiral Edge Modes in Topological Magnon Insulators
arXiv:2410.05378 · doi:10.1103/btt2-mp62
Abstract
Topological magnon insulators exhibit robust edge modes with chiral properties similar to quantum Hall edge states. However, due to their strong localization at the edges, interactions between these chiral edge magnons can be significant, as we show in a model of coupled magnon-conserving spin chains in an electric field gradient. The chiral edge modes remain edge-localized and do not scatter into the bulk, and we characterize their scattering phase: for strongly-localized edge modes we observe significant deviation from the bare scattering phase. This renormalization of edge scattering can be attributed to bound bulk modes resonating with the chiral edge magnons, in the spirit of Feshbach resonances in atomic physics. We argue that the scattering dynamics can be probed experimentally with a real-time measurement protocol using inelastic scanning tunneling spectroscopy. Our results show that interaction among magnons can be encoded in an effective edge model of reduced dimensionality, where the interactions with the bulk renormalize the effective couplings. Our work introduces a systematic way to determine the many-body effective theory for edge states in topological magnon insulators.
12 pages, 7 figures
References in corpus (12)
- Spin current and magneto-electric effect in non-collinear magnets
- Observation of the Magnon Hall Effect
- Topological Magnon Insulator in Insulating Ferromagnet
- Tunable magnon Weyl points in ferromagnetic pyrochlores
- Hall effect of triplons in a dimerized quantum magnet
- The planar thermal Hall conductivity in the Kitaev magnet α-RuCl3
- Magnonic topological insulators in antiferromagnets
- Magnonic quantum Hall effect and Wiedemann-Franz law
- Magnetic field effect on topological spin excitations in CrI
- Topological magnons driven by the Dzyaloshinskii-Moriya interaction in the centrosymmetric ferromagnet MnGe
- Flavor-wave theory with quasiparticle damping at finite temperatures: Application to chiral edge modes in the Kitaev model
- Kitaev-Heisenberg model on the star lattice: From chiral Majorana fermions to chiral triplons