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200纳米厚钇铁石榴石薄膜中单向自旋热传导效应的研究

Investigation of the unidirectional spin heat conveyer effect in a 200 nm thin Yttrium Iron Garnet film.

作者信息

Wid Olga, Bauer Jan, Müller Alexander, Breitenstein Otwin, Parkin Stuart S P, Schmidt Georg

机构信息

Institut für Physik, Martin-Luther-Universität Halle-Wittenberg, Halle, 06120, Germany.

Max Planck Institute of Microstructure Physics, Halle, 06120, Germany.

出版信息

Sci Rep. 2016 Jun 17;6:28233. doi: 10.1038/srep28233.

Abstract

We have investigated the unidirectional spin wave heat conveyer effect in sub-micron thick yttrium iron garnet (YIG) films using lock-in thermography (LIT). Although the effect is small in thin layers this technique allows us to observe asymmetric heat transport by magnons which leads to asymmetric temperature profiles differing by several mK on both sides of the exciting antenna, respectively. Comparison of Damon-Eshbach and backward volume modes shows that the unidirectional heat flow is indeed due to non-reciprocal spin-waves. Because of the finite linewidth, small asymmetries can still be observed when only the uniform mode of ferromagnetic resonance is excited. The latter is of extreme importance for example when measuring the inverse spin-Hall effect because the temperature differences can result in thermovoltages at the contacts. Because of the non-reciprocity these thermovoltages reverse their sign with a reversal of the magnetic field which is typically deemed the signature of the inverse spin-Hall voltage.

摘要

我们使用锁相热成像技术(LIT)研究了亚微米厚的钇铁石榴石(YIG)薄膜中的单向自旋波热传导效应。尽管在薄层中该效应较小,但这种技术使我们能够观察到磁振子引起的不对称热传输,这导致在激励天线两侧分别产生相差数毫开尔文的不对称温度分布。对达蒙 - 埃什巴赫模式和反向体模的比较表明,单向热流确实是由非互易自旋波引起的。由于有限的线宽,当仅激发铁磁共振的均匀模式时,仍然可以观察到小的不对称性。例如,在测量逆自旋霍尔效应时,后者极其重要,因为温度差会在接触点产生热电压。由于非互易性,这些热电压会随着磁场的反转而改变其符号,这通常被视为逆自旋霍尔电压的特征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eb27/4911583/4f1a7cfcf4d6/srep28233-f1.jpg

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