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Longitudinal spin Seebeck effect contribution in transverse spin Seebeck effect experiments in Pt/YIG and Pt/NFO

机译:在Pt / YIG和Pt / NFO中的横向自旋塞贝克效应实验中的纵向自旋塞贝克效应贡献

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摘要

The spin Seebeck effect, the generation of a spin current by a temperature gradient, has attracted great attention, but the interplay over a millimetre range along a thin ferromagnetic film as well as unintended side effects which hinder an unambiguous detection have evoked controversial discussions. Here, we investigate the inverse spin Hall voltage of a 10 nm thin Pt strip deposited on the magnetic insulators Y3Fe5O12 and NiFe2O4 with a temperature gradient in the film plane. We show characteristics typical of the spin Seebeck effect, although we do not observe the most striking features of the transverse spin Seebeck effect. Instead, we attribute the observed voltages to the longitudinal spin Seebeck effect generated by a contact tip induced parasitic out-of-plane temperature gradient, which depends on material, diameter and temperature of the tip.
机译:自旋塞贝克效应,即通过温度梯度产生的自旋电流,引起了极大的关注,但是沿着铁磁薄膜的毫米范围内的相互作用以及阻碍明确检测的意外副作用引起了有争议的讨论。在这里,我们研究了在薄膜平面上以温度梯度沉积在磁绝缘体Y3Fe5O12和NiFe2O4上的10 nm薄Pt带的反自旋霍尔电压。尽管我们没有观察到横向自旋塞贝克效应的最显着特征,但我们展示了自旋塞贝克效应的典型特征。相反,我们将观察到的电压归因于由接触尖端引起的寄生平面外温度梯度所产生的纵向自旋塞贝克效应,这取决于尖端的材料,直径和温度。

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