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Thermoelectric Signal Enhancement by Reconciling the Spin Seebeck and Anomalous Nernst Effects in Ferromagnet/Non-magnet Multilayers

机译:通过调和铁磁体/非磁体多层中的自旋塞贝克效应和能斯特反常效应来增强热电信号

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摘要

The utilization of ferromagnetic (FM) materials in thermoelectric devices allows one to have a simpler structure and/or independent control of electric and thermal conductivities, which may further remove obstacles for this technology to be realized. The thermoelectricity in FMon-magnet (NM) heterostructures using an optical heating source is studied as a function of NM materials and a number of multilayers. It is observed that the overall thermoelectric signal in those structures which is contributed by spin Seebeck effect and anomalous Nernst effect (ANE) is enhanced by a proper selection of NM materials with a spin Hall angle that matches to the sign of the ANE. Moreover, by an increase of the number of multilayer, the thermoelectric voltage is enlarged further and the device resistance is reduced, simultaneously. The experimental observation of the improvement of thermoelectric properties may pave the way for the realization of magnetic-(or spin-) based thermoelectric devices.
机译:在热电设备中铁磁(FM)材料的使用使人们可以拥有更简单的结构和/或电导率和热导率的独立控制,这可以进一步消除实现该技术的障碍。研究了使用光加热源的FM /非磁体(NM)异质结构中的热电随NM材料和许多多层的变化。可以看出,通过适当选择自旋霍尔角与ANE符号相匹配的NM材料,可以增强由自旋塞贝克效应和异常能斯特效应(ANE)引起的那些结构中的整体热电信号。此外,通过增加多层的数量,同时进一步增大了热电电压并且减小了器件电阻。对热电性质改善的实验观察可以为实现基于磁性(或自旋)的热电装置铺平道路。

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