Mode-selective spin-phonon coupling in spin-orbit-coupled Mott insulators generates a peak-dip-peak field dependence in spin heat current via Landauer transport and exact diagonalization.
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Phonon Hall viscosity in α-RuCl₃, measured via acoustic Faraday effect, accounts for a substantial part of the material's intrinsic thermal Hall conductivity.
Spin-orbit coupling enriches spin-phonon interactions in α-RuCl₃ to produce finite phonon Berry curvatures and a thermal Hall effect that qualitatively matches measured κ_xy field dependence.
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Understanding Anomalous Magnetothermal Transport via Disentangling Shear and Compression Phonons
Mode-selective spin-phonon coupling in spin-orbit-coupled Mott insulators generates a peak-dip-peak field dependence in spin heat current via Landauer transport and exact diagonalization.