能斯特效应
能斯特方程
凝聚态物理
拓扑(电路)
热电效应
反铁磁性
物理
自旋(空气动力学)
联轴节(管道)
材料科学
手性(物理)
自旋结构
铁磁性
霍尔效应
马格农
异常(物理)
塞贝克系数
空中骑兵
拓扑绝缘体
作者
Jiajun Ma,Jiaxing Liao,Yazhou Li,Yazhou Li,Yuwei Zhang,J. H. Wang,Jinke Bao,Yifan Sun,Shuang Jia,Yuke Li,Yuke Li
标识
DOI:10.1002/advs.202522151
摘要
ABSTRACT Kagome magnets exhibit a range of novel and nontrivial topological properties due to the strong interplay between topology and magnetism, which also extends to their thermoelectric applications. Recent advances in the study of magnetic topological materials have highlighted their intriguing anomalous Hall and thermoelectric effects, arising primarily from large intrinsic Berry curvature. Here, we report observation of a large room‐temperature (RT) anomalous Nernst effects (ANE) of ∼ 1.3 µ V K −1 in the kagome antiferromagnet (AFM) ErMn 6 Sn 6 , which is comparable to the largest signals observed in known magnetic materials. Surprisingly, we further found that a significant topological Nernst signal at RT and peaking a maximum of approximately 0.2 µ V K −1 at 180 K, exactly coupling with ANE in the spiral AFM state, originates from the real‐space nonzero spin chirality caused by incommensurate spin structure. This study demonstrates a potential room‐temperature thermoelectric application platform based on the Nernst effect, and provides insights for discovering significant anomalous and topological transverse transport effects in the Incommensurate spin texture, Kagome antiferromagnet, Thermoelectric effect, Topological Nernst effectincommensurate AFM system.
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