Topological magnon insulator spin excitations in the two-dimensional ferromagnet CrBr
arXiv:2107.02486 · doi:10.1103/PhysRevB.104.L020402
Abstract
Topological magnons are bosonic analogues of topological fermions in electronic systems. They have been studied extensively by theory but rarely realized by experiment. Here, by performing inelastic neutron scattering measurements on single crystals of a two-dimensional ferromagnet CrBr, which was classified as Dirac magnon semimetal featured by the linear bands crossing at the Dirac points, we fully map out the magnetic excitation spectra, and reveal that there is an apparent gap of 3.5~meV between the acoustic and optical branches of the magnons at the K point. By collaborative efforts between experiment and theoretical calculations using a five-orbital Hubbard model obtained from first-principles calculations to derive the exchange parameters, we find that a Hamiltonian with Heisenberg exchange interactions, next-nearest-neighbor Dzyaloshinskii-Moriya (DM) interaction, and single-ion anisotropy is more appropriate to describe the system. Calculations using the model show that the lower and upper magnon bands separated by the gap exhibit Chern numbers of . These results indicate that CrBr is a topological magnon insulator, where the nontrivial gap is a result of the DM interaction.
Version as published in PRB Letter, main text 7 pages, supplementary materials 6 pages
References in corpus (16)
- Quantum ESPRESSO: a modular and open-source software project for quantum simulations of materials
- Advanced capabilities for materials modelling with Quantum ESPRESSO
- Dirac materials
- Observation of the Magnon Hall Effect
- Theoretical prediction of rotating magnon wavepacket in ferromagnets
- Topological Magnon Insulator in Insulating Ferromagnet
- Spin-wave excitations evidencing the Kitaev interaction in single crystalline -RuCl
- Tunable magnon Weyl points in ferromagnetic pyrochlores
- Hall effect of triplons in a dimerized quantum magnet
- Dirac magnons in honeycomb ferromagnets
- Relativistic exchange interactions in CrX (X=Cl, Br, I) monolayers
- The interplay of Dzyaloshinskii-Moriya and Kitaev interactions for magnonic properties of Heisenberg-Kitaev honeycomb ferromagnets
- Evidence for magnon-phonon coupling in the topological magnet CuTeO
- Magnon Hall Effect without Dzyaloshinskii-Moriya Interaction
- Evolution of magnetic Dirac bosons in a honeycomb lattice
- Edge Magnon Excitation in Spin Dimer Systems
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- Strain Engineering of Photo-induced Topological Phases in 2D Ferromagnets
- Electronic structure and magnetism of the Hund insulator CrI3
- Magneto-elastic coupling in a sinusoidal modulated magnet CrGaN