Coexistence of large anomalous Nernst effect and large coercive force in amorphous ferrimagnetic TbCo alloy films

铁磁性 矫顽力 能斯特效应 材料科学 无定形固体 凝聚态物理 能斯特方程 合金 铁合金 冶金 磁化 化学 结晶学 磁场 物理化学 物理 电极 量子力学
作者
Miho Odagiri,Hiroto Imaeda,Ahmet Yagmur,Yuichiro Kurokawa,Satoshi Sumi,Hiroyuki Awano,Kenji Tanabe
出处
期刊:Applied Physics Letters [American Institute of Physics]
卷期号:124 (14) 被引量:5
标识
DOI:10.1063/5.0196720
摘要

The anomalous Nernst effect (ANE) has garnered significant interest for practical applications, particularly in energy harvesting and heat flux sensing. For these applications, it is crucial for the module to operate without an external magnetic field, necessitating a combination of a large ANE and a substantial coercive force. However, most materials exhibiting a large ANE typically have a relatively small coercive force. In our research, we have explored the ANE in amorphous ferrimagnetic TbCo alloy films, noting that the coercive force peaks at the magnetization compensation point (MCP). We observed that transverse Seebeck coefficients are amplified with Tb doping, reaching more than 1.0 μV/K over a wide composition range near the MCP, which is three times greater than that of pure Co. Our findings indicate that this enhancement is primarily due to direct conversion, a product of the transverse thermoelectric component and electrical resistivity. TbCo films present several significant advantages for practical use: a large ANE, the capability to exhibit both positive and negative ANE, the flexibility to be deposited on any substrate due to their amorphous nature, a low thermal conductivity, and a large coercive force. These attributes make TbCo films a promising material for advancing ANE-based technologies.
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