arXiv · 2501.10485
Quantitative noncontact measurement of thermal Hall angle and transverse thermal conductivity by lock-in thermography
Abstract
We propose and demonstrate a quantitative noncontact measurement method for the thermal Hall effect (THE) based on magnetic-field-modulated lock-in thermography. This method enables visualization of THE-induced temperature change and quantitative estimation of the thermal Hall angle $\theta_{\rm THE}$ by applying periodic magnetic fields to a sample and obtaining the first harmonic response of thermal images. By combining this method with LIT-based measurement techniques for the longitudinal thermal conductivity $\kappa_{xx}$, we also quantify the transverse thermal conductivity $\kappa_{xy}$. We validate our measurement methods by estimating $\theta_{\rm THE}$, $\kappa_{xx}$, and $\kappa_{xy}$ in a ferromagnetic Heusler alloy Co$_2$MnGa slab showing large THE.
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Takumi Imamura, Takamasa Hirai, Koichi Oyanagi, Ryo Iguchi, Kenta Takamori, Satoru Kobayashi, Ken-ichi Uchida. 2025-01-17. Quantitative noncontact measurement of thermal Hall angle and transverse thermal conductivity by lock-in thermography. https://doi.org/10.1103/physrevapplied.23.024018
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