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Autori principali: Ma, Jiajun, Chen, Rong, Li, Yazhou, Shi, Chenfei, Cao, Yantao, Zhang, YuWei, Liao, Jiaxing, Han, Yunfei, Wen, Guangxi, Wang, Jialu, Guo, Hanjie, Dai, Jianhui, Fu, Chenguang, Bao, Jin-Ke, Sun, Yan, Xu, Zhu-An, Li, Yuke
Natura: Preprint
Pubblicazione: 2025
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Accesso online:https://arxiv.org/abs/2511.21361
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author Ma, Jiajun
Chen, Rong
Li, Yazhou
Shi, Chenfei
Cao, Yantao
Zhang, YuWei
Liao, Jiaxing
Han, Yunfei
Wen, Guangxi
Wang, Jialu
Guo, Hanjie
Dai, Jianhui
Fu, Chenguang
Bao, Jin-Ke
Sun, Yan
Xu, Zhu-An
Li, Yuke
author_facet Ma, Jiajun
Chen, Rong
Li, Yazhou
Shi, Chenfei
Cao, Yantao
Zhang, YuWei
Liao, Jiaxing
Han, Yunfei
Wen, Guangxi
Wang, Jialu
Guo, Hanjie
Dai, Jianhui
Fu, Chenguang
Bao, Jin-Ke
Sun, Yan
Xu, Zhu-An
Li, Yuke
contents Topological Kagome magnets, characterized by nontrivial electronic band structures featuring flat band, Dirac cone and van Hove singularities, provide a new avenue for the realization of thermoelectric devices. Unlike the conventional longitudinal Seebeck effect, transverse thermoelectric (TE) effects like the Nernst effect have attracted growing interest due to their unique transverse geometry and potential advantages. Here, we report the observation of a significant transverse thermoelectric conductivity alpha A_zx of 15 A K-1m-1 at low temperatures, together with a pronounced anomalous Nernst effect in the Kagome antiferromagnet FeGe, which exhibits a charge density wave inside the antiferromagnetic (AFM) state. This value is the highest record among known AFM materials. Furthermore, the thermopower at 14 T increases by 102-104% around the canted-AFM (CAFM) transition temperature, Tcant, comparable to that of the well-known AFM thermoelectric materials. These effects are attributed to large Berry curvature arising from the non-collinear spin texture in FeGe, highlighting its potential for enhancing thermoelectric performance and its candidacy for magneto-TE applications in Kagome antiferromagnetic materials.
format Preprint
id arxiv_https___arxiv_org_abs_2511_21361
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Large longitudinal and anomalous transverse Magneto-thermoelectric effect in kagome antiferromagnet FeGe
Ma, Jiajun
Chen, Rong
Li, Yazhou
Shi, Chenfei
Cao, Yantao
Zhang, YuWei
Liao, Jiaxing
Han, Yunfei
Wen, Guangxi
Wang, Jialu
Guo, Hanjie
Dai, Jianhui
Fu, Chenguang
Bao, Jin-Ke
Sun, Yan
Xu, Zhu-An
Li, Yuke
Materials Science
Topological Kagome magnets, characterized by nontrivial electronic band structures featuring flat band, Dirac cone and van Hove singularities, provide a new avenue for the realization of thermoelectric devices. Unlike the conventional longitudinal Seebeck effect, transverse thermoelectric (TE) effects like the Nernst effect have attracted growing interest due to their unique transverse geometry and potential advantages. Here, we report the observation of a significant transverse thermoelectric conductivity alpha A_zx of 15 A K-1m-1 at low temperatures, together with a pronounced anomalous Nernst effect in the Kagome antiferromagnet FeGe, which exhibits a charge density wave inside the antiferromagnetic (AFM) state. This value is the highest record among known AFM materials. Furthermore, the thermopower at 14 T increases by 102-104% around the canted-AFM (CAFM) transition temperature, Tcant, comparable to that of the well-known AFM thermoelectric materials. These effects are attributed to large Berry curvature arising from the non-collinear spin texture in FeGe, highlighting its potential for enhancing thermoelectric performance and its candidacy for magneto-TE applications in Kagome antiferromagnetic materials.
title Large longitudinal and anomalous transverse Magneto-thermoelectric effect in kagome antiferromagnet FeGe
topic Materials Science
url https://arxiv.org/abs/2511.21361