Significant improvement in sensitivity of an anomalous Nernst heat flux sensor by composite structure

Fuente: arXiv
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Main Authors: Imaeda, Hiroto, Toida, Reiji, Takeuchi, Tsunehiro, Awano, Hiroyuki, Tanabe, Kenji
Format: Preprint
Published: 2024
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author Imaeda, Hiroto
Toida, Reiji
Takeuchi, Tsunehiro
Awano, Hiroyuki
Tanabe, Kenji
author_facet Imaeda, Hiroto
Toida, Reiji
Takeuchi, Tsunehiro
Awano, Hiroyuki
Tanabe, Kenji
contents Heat flux sensors (HFS) have attracted significant interest for their potential in managing waste heat efficiently. A recently proposed HFS, that works on the basis of the anomalous Nernst effect (ANE), offers several advantages in its simple structure leading to easy fabrication, low cost, and reduced thermal resistance. However, enhancing sensitivity through traditional material selection is now challenging due to a small number of materials satisfying the required coexistence of a large transverse Seebeck coefficient and low thermal conductivity. In this study, by utilizing composite structures and optimizing the device geometry, we have achieved a substantial improvement in the sensitivity of an ANE-based HFS. We developed composite structures comprised of a plastic substrate with an uneven surface and three-dimensional (3D) uneven TbCo films, fabricated using nanoimprint techniques and sputtering. This approach resulted in a sensitivity that is approximately four times greater than that observed in previous studies. Importantly, this method is independent of the material properties and can significantly enhance the sensitivity. Our findings could lead to the development of highly sensitive HFS devices and open new avenues for the fabrication of 3D devices.
format Preprint
id arxiv_https___arxiv_org_abs_2405_07758
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Significant improvement in sensitivity of an anomalous Nernst heat flux sensor by composite structure
Imaeda, Hiroto
Toida, Reiji
Takeuchi, Tsunehiro
Awano, Hiroyuki
Tanabe, Kenji
Mesoscale and Nanoscale Physics
Materials Science
Heat flux sensors (HFS) have attracted significant interest for their potential in managing waste heat efficiently. A recently proposed HFS, that works on the basis of the anomalous Nernst effect (ANE), offers several advantages in its simple structure leading to easy fabrication, low cost, and reduced thermal resistance. However, enhancing sensitivity through traditional material selection is now challenging due to a small number of materials satisfying the required coexistence of a large transverse Seebeck coefficient and low thermal conductivity. In this study, by utilizing composite structures and optimizing the device geometry, we have achieved a substantial improvement in the sensitivity of an ANE-based HFS. We developed composite structures comprised of a plastic substrate with an uneven surface and three-dimensional (3D) uneven TbCo films, fabricated using nanoimprint techniques and sputtering. This approach resulted in a sensitivity that is approximately four times greater than that observed in previous studies. Importantly, this method is independent of the material properties and can significantly enhance the sensitivity. Our findings could lead to the development of highly sensitive HFS devices and open new avenues for the fabrication of 3D devices.
title Significant improvement in sensitivity of an anomalous Nernst heat flux sensor by composite structure
topic Mesoscale and Nanoscale Physics
Materials Science
url https://arxiv.org/abs/2405.07758