Kitaev physics has recently attracted attention in condensed matter for its anticipated novel quantum spin liquid state. The thermal transport measurement is crucial for probing the novel features of charge-neutral quasiparticles. In this letter, we report a significant thermal Hall effect in Na2Co2TeO6 (NCTO), a Kitaev quantum spin liquid candidate, when the magnetic field is applied along the out-of-plane direction of the honeycomb plane. The thermal conductivity (κxx) and thermal Hall conductivity (κxy) in NCTO reveal distinct magnetic field dependences below and above the Neel temperature (TN) of 27 K. For T>TN, κxx has a monotonic decrease in the field dependence, while κxy persists up to T∗ = 150 K. On the other hand, both κxx and κxy exhibit complex field dependence for T<TN.
@article{arxiv.2208.01904,
title = {Significant thermal Hall effect in the 3$d$ cobalt Kitaev system $Na_2Co_2TeO_6$},
author = {Heejun Yang and Chaebin Kim and Ysun Choi and Jun Han Lee and Gaoting Lin and Jie Ma and Marie Kratochvílová and Petr Proschek and Eun-Gook Moon and Ki Hoon Lee and Yoon Seok Oh and Je-Geun Park},
journal= {arXiv preprint arXiv:2208.01904},
year = {2022}
}
Comments
13 pages, 3 figures, accepted for publication in Physical Review B