Large phonon thermal Hall conductivity in the antiferromagnetic insulator CuTeO.

Proc Natl Acad Sci U S A

Département de Physique, Institut Quantique and Regroupement Québécois sur les Matériaux de Pointe, Université de Sherbrooke, Sherbrooke, QC J1K 2R1, Canada.

Published: August 2022

AI Article Synopsis

  • Phonons can create a thermal Hall effect in specific insulators, especially those with unique properties like rare-earth impurities and multiferroics.
  • The study aims to determine if the phonon Hall effect is rare and tied to special characteristics or if it's common across many insulators.
  • The researchers investigated CuTeO, a cubic antiferromagnet without those unique traits, and found it exhibits a significant thermal Hall conductivity due to phonons, suggesting that the phonon Hall effect may be a widespread phenomenon in solids.

Article Abstract

Phonons are known to generate a thermal Hall effect in certain insulators, including oxides with rare-earth impurities, quantum paraelectrics, multiferroic materials, and cuprate Mott insulators. In each case, a special feature of the material is presumed relevant for the underlying mechanism that confers chirality to phonons in a magnetic field. A fundamental question is whether a phonon Hall effect is an unusual occurrence-linked to special characteristics such as skew scattering off rare-earth impurities, structural domains, ferroelectricity, or ferromagnetism-or a much more common property of insulators than hitherto believed. To help answer this question, we have turned to a material with none of the previously encountered special features: the cubic antiferromagnet CuTeO. We find that its thermal Hall conductivity [Formula: see text] is among the largest of any insulator so far. We show that this record-high [Formula: see text] signal is due to phonons, and it does not require the presence of magnetic order, as it persists above the ordering temperature. We conclude that the phonon Hall effect is likely to be a fairly common property of solids.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9407214PMC
http://dx.doi.org/10.1073/pnas.2208016119DOI Listing

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