Signatures of non-Loudon-Fleury Raman scattering in the Kitaev magnet -LiIrO
arXiv:2202.00581 · doi:10.1103/PhysRevB.105.L241101
Abstract
We investigate the magnetic excitations of the hyperhoneycomb Kitaev magnet - by means of inelastic Raman scattering. The spectra exhibits a coexistence of a broad scattering continuum and two sharp low-energy peaks at 2.5 meV and 3 meV, with a distinctive polarization dependence. While the continuum is suggestive of fractional quasi-particles emerging from a proximate quantum spin liquid phase, the sharp peaks provide the first experimental signature of the `non-Loudon-Fleury' one-magnon scattering processes proposed recently [Phys. Rev. B 104, 144412 (2021)]. The corresponding microscopic mechanism is similar to the one leading to the symmetric off-diagonal exchange interaction (as it involves a combination of both direct and ligand-mediated exchange paths), but is otherwise completely unexpected within the traditional Loudon-Fleury theory of Raman scattering. The present experimental verification therefore calls for a drastic reevaluation of Raman scattering in similar systems with strong spin orbit coupling and multiple exchange paths.
5 pages, 4 figures, Supplementary material
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Cited by in corpus (7)
- Beyond Kitaev physics in strong spin-orbit coupled magnets
- Nonlinear response of the Kitaev honeycomb lattice model in a weak magnetic field
- Magnetic Excitations and Interactions in the Kitaev Hyperhoneycomb Iridate -LiIrO
- Phonon Dynamics in the Generalized Kitaev Spin Liquid
- Sound attenuation in the hyperhoneycomb Kitaev spin liquid
- Long-lived Zone-boundary Magnons in an Antiferromagnet
- Signatures of fractionalization in the optical phonons of hyperhoneycomb Kitaev magnet -LiIrO