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正常金属-铁磁体双层结构中自旋塞贝克、近邻诱导和铁磁诱导反常能斯特效应的定量解缠。

Quantitative Disentanglement of the Spin Seebeck, Proximity-Induced, and Ferromagnetic-Induced Anomalous Nernst Effect in Normal-Metal-Ferromagnet Bilayers.

作者信息

Bougiatioti Panagiota, Klewe Christoph, Meier Daniel, Manos Orestis, Kuschel Olga, Wollschläger Joachim, Bouchenoire Laurence, Brown Simon D, Schmalhorst Jan-Michael, Reiss Günter, Kuschel Timo

机构信息

Center for Spinelectronic Materials and Devices, Department of Physics, Bielefeld University, Universitätsstraße 25, 33615 Bielefeld, Germany.

Advanced Light Source, Lawrence Berkeley National Laboratory, Berkeley, California 94720, USA.

出版信息

Phys Rev Lett. 2017 Dec 1;119(22):227205. doi: 10.1103/PhysRevLett.119.227205. Epub 2017 Nov 29.

Abstract

We identify and investigate thermal spin transport phenomena in sputter-deposited Pt/NiFe_{2}O_{x} (4≥x≥0) bilayers. We separate the voltage generated by the spin Seebeck effect from the anomalous Nernst effect (ANE) contributions and even disentangle the ANE in the ferromagnet (FM) from the ANE produced by the Pt that is spin polarized due to its proximity to the FM. Further, we probe the dependence of these effects on the electrical conductivity and the band gap energy of the FM film varying from nearly insulating NiFe_{2}O_{4} to metallic Ni_{33}Fe_{67}. A proximity-induced ANE could only be identified in the metallic Pt/Ni_{33}Fe_{67} bilayer in contrast to Pt/NiFe_{2}O_{x} (x>0) samples. This is verified by the investigation of static magnetic proximity effects via x-ray resonant magnetic reflectivity.

摘要

我们识别并研究了溅射沉积的Pt/NiFe₂Oₓ(4≥x≥0)双层膜中的热自旋输运现象。我们将自旋塞贝克效应产生的电压与反常能斯特效应(ANE)的贡献区分开来,甚至将铁磁体(FM)中的ANE与由于靠近FM而发生自旋极化的Pt产生的ANE区分开来。此外,我们探究了这些效应对于FM薄膜电导率和带隙能量的依赖性,该FM薄膜从近乎绝缘的NiFe₂O₄变化到金属性的Ni₃₃Fe₆₇。与Pt/NiFe₂Oₓ(x>0)样品形成对比的是,仅在金属性的Pt/Ni₃₃Fe₆₇双层膜中识别出了邻近诱导的ANE。通过x射线共振磁反射对静态磁邻近效应进行研究,验证了这一点。

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