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Role of TbFe on Perpendicular Magnetic Anisotropy and Giant Magnetoresistance Effect in Co/NiN-Based Spin Valves

机译:TbFe在基于Co / Ni N的自旋阀中垂直磁各向异性和巨磁阻效应中的作用

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摘要

The exchange-coupled [Co/Ni]N/TbFe nano-magnetic films can display strong perpendicular magnetic anisotropy (PMA) which depends on the Tb:Fe component ratio, TbFe layer thickness and the repetition number N of [Co/Ni]N multilayer. Perpendicular spin valves in the nano thickness scale, consisting of a [Co/Ni]3 free and a [Co/Ni]5/TbFe reference multilayer, show high giant magnetoresistance (GMR) signal of 6.5 % and a large switching field difference over 3 kOe. However, unexpected slanting of the free layer magnetization, accompanied by a reduced GMR ratio, was found to be caused by the presence of a thick Fe-rich or even a thin but Tb-rich TbFe layer. We attribute this phenomenon to the large magnetostriction effect of TbFe which probably induces strong stress acting on the free layer and hence reduces its interfacial PMA.
机译:交换耦合的[Co / Ni] N / TbFe纳米磁性膜可以显示强垂直磁各向异性(PMA),该各向异性取决于Tb:Fe组分比,TbFe层厚度和[Co / Ni] N的重复数N多层。纳米厚度尺度的垂直自旋阀由无[Co / Ni] 3和[Co / Ni] 5 / TbFe参比多层组成,显示出6.5%的高巨磁电阻(GMR)信号和整个范围内的大开关场差3科然而,发现自由层磁化的意外倾斜,伴随着降低的GMR比,是由于存在厚的富Fe甚至是薄但富Tb的TbFe层引起的。我们将此现象归因于TbFe的大磁致伸缩效应,它可能引起作用在自由层上的强应力,从而降低了其界面PMA。

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