English

Direct electrical probing of anomalous Nernst conductivity

Materials Science 2023-06-30 v3

Abstract

Despite the usefulness of the anomalous Nernst conductivity (αxyA\alpha^{A}_{xy}) for studying electronic band structures and exploring magnetic materials with large transverse thermopower, there has not been a straightforward way to obtain αxyA\alpha^{A}_{xy} in the experiment. Here, we propose a simple and versatile method enabling direct electrical probing of αxyA\alpha^{A}_{xy}, which is realized by creating a closed circuit consisting of a target magnetic material and a non-magnetic conductor. This method was experimentally demonstrated on a thin film of magnetic Weyl semimetal Co2_{2}MnGa, where the closed circuit was formed simply by connecting both ends of the Co2_{2}MnGa film with a Au wire. A good approximation of αxyA\alpha^{A}_{xy} was obtained in a wide temperature range, validating the proposed method and exhibiting its potential for aiding the further development of topological materials science and transverse thermoelectrics.

Keywords

Cite

@article{arxiv.2301.02465,
  title  = {Direct electrical probing of anomalous Nernst conductivity},
  author = {Weinan Zhou and Asuka Miura and Yuya Sakuraba and Ken-ichi Uchida},
  journal= {arXiv preprint arXiv:2301.02465},
  year   = {2023}
}

Comments

7 pages, 5 figures