First Principles Approach to Phonon Thermal Hall Effect in α-RuCl<sub>3</sub>
ORAL
Abstract
We apply a recently developed first-principles based approach for treating generic spin-phonon couplings in materials with strong spin-orbit coupling to study α-RuCl3. Of particular focus is the potential for this material to exhibit a phonon thermal Hall effect induced by spin-phonon interactions. We find that spin-orbit coupling significantly enriches the form of these interactions, and imbues them with chirality that is conducive to generating finite phonon Berry curvatures. We show that this leads to a phonon thermal Hall effect that qualitatively reproduces the measured field dependence of κxy without requiring a field-induced spin liquid.
*This research was funded by the Oak Ridge Associated Universities (ORAU) through the Ralph E. Powe Junior Faculty Enhancement Award to S.M.W. D.A.S.K. and R.V. gratefully acknowledge support by the Deutsche Forschungsgemeinschaft (DFG, German Research Foundation) for funding through TRR 288—422213477 (project A05).
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Publication: R. Dhakal et al., arXiv:2407.00659 (2024); R. Dhakal et al., arXiv:2407.00660 (2024).
Presenters
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Steve Winter
- Wake Forest University