English

Phonon thermal Hall effect in a metallic spin ice

Strongly Correlated Electrons 2022-08-09 v1 Materials Science

Abstract

It has become common knowledge that phonons can generate thermal Hall effect in a wide variety of materials, although the underlying mechanism is still controversial. We study longitudinal κxx\kappa_{xx} and transverse κxy\kappa_{xy} thermal conductivity in Pr2_2Ir2_2O7_7, which is a metallic analogue of spin ice. Despite the presence of mobile charge carriers, we find that both κxx\kappa_{xx} and κxy\kappa_{xy} are dominated by phonons. A T/HT/H scaling of κxx\kappa_{xx} unambiguously reveals that longitudinal heat current is substantially impeded by resonant scattering of phonons on paramagnetic spins. Upon cooling, the resonant scattering is strongly affected by a development of spin ice correlation and κxx\kappa_{xx} deviates from the scaling in an anisotropic way with respect to field directions. Strikingly, a set of the κxx\kappa_{xx} and κxy\kappa_{xy} data clearly shows that κxy\kappa_{xy} correlates with κxx\kappa_{xx} in its response to magnetic field including a success of the T/HT/H scaling and its failure at low temperature. This remarkable correlation provides solid evidence that an indispensable role is played by spin-phonon scattering not only for hindering the longitudinal heat conduction, but also for generating the transverse response.

Keywords

Cite

@article{arxiv.2202.12149,
  title  = {Phonon thermal Hall effect in a metallic spin ice},
  author = {Taiki Uehara and Takumi Ohtsuki and Masafumi Udagawa and Satoru Nakatsuji and Yo Machida},
  journal= {arXiv preprint arXiv:2202.12149},
  year   = {2022}
}

Comments

18 pages, 4 figures

R2 v1 2026-06-24T09:52:36.446Z