Observation of transverse Thomson effect

Fuente: arXiv
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Hauptverfasser: Takahagi, Atsushi, Hirai, Takamasa, Alasli, Abdulkareem, Park, Sang Jun, Nagano, Hosei, Uchida, Ken-ichi
Format: Preprint
Veröffentlicht: 2025
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author Takahagi, Atsushi
Hirai, Takamasa
Alasli, Abdulkareem
Park, Sang Jun
Nagano, Hosei
Uchida, Ken-ichi
author_facet Takahagi, Atsushi
Hirai, Takamasa
Alasli, Abdulkareem
Park, Sang Jun
Nagano, Hosei
Uchida, Ken-ichi
contents The thermoelectric Thomson effect, predicted in the 1850s by William Thomson, produces volumetric heating/cooling in a conductor due to the concerted action of the Seebeck and Peltier effects. Recently, transverse thermoelectrics studies on the Nernst and Ettingshausen effects have progressed rapidly to enable versatile thermal management technologies and to explore topological transport properties. However, a transverse Thomson effect, arising from the concerted action of the Nernst and Ettingshausen effects, has not yet been observed. Here, we report the observation of the transverse Thomson effect in a conductor. We observed volumetric heating/cooling in a semimetallic Bi$_{88}$Sb$_{12}$ alloy induced by a charge current, temperature gradient, and magnetic field applied orthogonally to each other using thermoelectric imaging techniques. We found that the heating/cooling can be switched by the field direction. Our experiments and analyses reveal the essential difference between the conventional and transverse Thomson effects; the former depends sorely on the temperature derivative of the Seebeck coefficient, while the latter depends not only on the temperature derivative of the Nernst coefficient but also on its magnitude. The observation of the transverse Thomson effect fills a missing piece in the history of thermoelectrics and provides a new principle for active thermal management technologies.
format Preprint
id arxiv_https___arxiv_org_abs_2501_05857
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Observation of transverse Thomson effect
Takahagi, Atsushi
Hirai, Takamasa
Alasli, Abdulkareem
Park, Sang Jun
Nagano, Hosei
Uchida, Ken-ichi
Materials Science
The thermoelectric Thomson effect, predicted in the 1850s by William Thomson, produces volumetric heating/cooling in a conductor due to the concerted action of the Seebeck and Peltier effects. Recently, transverse thermoelectrics studies on the Nernst and Ettingshausen effects have progressed rapidly to enable versatile thermal management technologies and to explore topological transport properties. However, a transverse Thomson effect, arising from the concerted action of the Nernst and Ettingshausen effects, has not yet been observed. Here, we report the observation of the transverse Thomson effect in a conductor. We observed volumetric heating/cooling in a semimetallic Bi$_{88}$Sb$_{12}$ alloy induced by a charge current, temperature gradient, and magnetic field applied orthogonally to each other using thermoelectric imaging techniques. We found that the heating/cooling can be switched by the field direction. Our experiments and analyses reveal the essential difference between the conventional and transverse Thomson effects; the former depends sorely on the temperature derivative of the Seebeck coefficient, while the latter depends not only on the temperature derivative of the Nernst coefficient but also on its magnitude. The observation of the transverse Thomson effect fills a missing piece in the history of thermoelectrics and provides a new principle for active thermal management technologies.
title Observation of transverse Thomson effect
topic Materials Science
url https://arxiv.org/abs/2501.05857