Evidence of a Phonon Hall Effect in the Kitaev Spin Liquid Candidate $\alpha$-RuCl$_3$
Abstract
The material -RuCl has been the subject of intense scrutiny as a potential Kitaev quantum spin liquid, predicted to display Majorana fermions as low energy excitations. In practice, -RuCl undergoes a transition to a state with antiferromagnetic order below a temperature 7 K, but this order can be suppressed by applying an external in-plane magnetic field of = 7 T. Whether a quantum spin liquid phase exists just above that field is still an open question, but the reported observation of a quantized thermal Hall conductivity at 7 T by Kasahara and co-workers Kasahara ., Nature , 227 (2018) has been interpreted as evidence of itinerant Majorana fermions in the Kitaev quantum spin liquid state. In this study, we re-examine the origin of the thermal Hall conductivity in -RuCl. Our measurements of () on several different crystals yield a temperature dependence very similar to that of the phonon-dominated longitudinal thermal conductivity (), for which the natural explanation is that is also mostly carried by phonons. Upon cooling, peaks at 20 K, then drops until , whereupon it suddenly increases again. The abrupt increase below is attributed to a sudden reduction in the scattering of phonons by low-energy spin fluctuations as these become partially gapped when the system orders. The fact that also increases suddenly below is strong evidence that the thermal Hall effect in -RuCl is also carried predominantly by phonons. This implies that any quantized signal from Majorana edge modes would have to come on top of a sizable -- and sample-dependent -- phonon background.
Keywords
Cite
@article{arxiv.2111.05493,
title = {Evidence of a Phonon Hall Effect in the Kitaev Spin Liquid Candidate $\alpha$-RuCl$_3$},
author = {É. Lefrançois and G. Grissonnanche and J. Baglo and P. Lampen-Kelley and J. Yan and C. Balz and D. Mandrus and S. E. Nagler and S. Kim and Young-June Kim and N. Doiron-Leyraud and L. Taillefer},
journal= {arXiv preprint arXiv:2111.05493},
year = {2022}
}
Comments
6 pages, 3 figures