It has been known for more than a decade that phonons can produce an off-diagonal thermal conductivity in presence of magnetic field. Recent studies of thermal Hall conductivity, κxy, in a variety of contexts, however, have assumed a negligibly small phonon contribution. We present a study of κxy in quantum paraelectric SrTiO3, which is a non-magnetic insulator and find that its peak value exceeds what has been reported in any other insulator, including those in which the signal has been qualified as 'giant'. Remarkably, κxy(T) and κ(T) peak at the same temperature and the former decreases faster than the latter at both sides of the peak. Interestingly, in the case of La2CuO4 and α-RuCl3, κxy(T) and κ(T) peak also at the same temperature. We also studied KTaO3 and found a small signal, indicating that a sizable κxy(T) is not a generic feature of quantum paraelectrics. Combined to other observations, this points to a crucial role played by antiferrodistortive domains in generating κxy of this solid.
@article{arxiv.1909.06552,
title = {Phonon thermal Hall effect in strontium titanate},
author = {Xiaokang Li and Benoît Fauqué and Zengwei Zhu and Kamran Behnia},
journal= {arXiv preprint arXiv:1909.06552},
year = {2020}
}
Comments
Main text: 6 pages, 4 figures, Supplemental Material is included. Accepted by Phys. Rev. Lett