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Interplay of Peltier and Seebeck Effects in Nanoscale Nonlocal Spin Valves

机译:珀耳帖效应和塞贝克效应在纳米级非局部自旋阀中的相互作用

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摘要

We have experimentally studied the role of thermoelectric effects in nanoscale nonlocal spin valve devices. A finite element thermoelectric model is developed to calculate the generated Seebeck voltages due to Peltier and Joule heating in the devices. By measuring the first, second, and third harmonic voltage response nonlocally, the model is experimentally examined. The results indicate that the combination of Peltier and Seebeck effects contributes significantly to the nonlocal baseline resistance. Moreover, we found that the second and third harmonic response signals can be attributed to Joule heating and temperature dependencies of both the Seebeck coefficient and resistivity.
机译:我们已经通过实验研究了热电效应在纳米级非局部自旋阀装置中的作用。建立了有限元热电模型,以计算由于设备中的珀耳帖和焦耳热而产生的塞贝克电压。通过非局部测量一次,二次和三次谐波电压响应,可以对模型进行实验检查。结果表明,珀耳帖效应和塞贝克效应的组合对非局部基线耐药性有显着贡献。此外,我们发现二次谐波和三次谐波响应信号可归因于塞贝克系数和电阻率的焦耳热和温度依赖性。

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