首页> 外文期刊>The Physics of Metals and Metallography >Magnetoresistive Properties of CoFe/Cu/CoFe/Dy Pseudo Spin Valves under Conditions of Interdiffusion of Dysprosium and CoFe Ferromagnetic Alloy Layers
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Magnetoresistive Properties of CoFe/Cu/CoFe/Dy Pseudo Spin Valves under Conditions of Interdiffusion of Dysprosium and CoFe Ferromagnetic Alloy Layers

机译:粘液酮和CoFe铁磁合金层混合条件下CoFe / Cu / Cofe / Dy伪旋转阀的磁阻性能

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摘要

Pseudo spin valve nanostructures, which comprise a dysprosium layer and exhibit giant magnetoresistance, are prepared by magnetron sputtering. The field dependences of magnetoresistance of the as-prepared nanostructures and nanostructures subjected to annealing and prolonged aging at room temperature were measured in a 83-333 K temperature range. Changes in the shape of magnetoresistance curves are used to identify changes in the magnetic state of the nanostructure. The microstructure of the nanostructures has been studied. Changes in the microstructure and magnetoresistive properties of pseudo spin valves were found, which are caused by annealing and storage. The results are interpreted on the assumption of the formation of Dy-Co-Fe ferromagnetic alloy at the CoFe/Dy interface.
机译:通过磁控溅射制备包含镝层和表现出巨磁阻的假旋转阀纳米结构。 在83-333kk温度范围内测定在室温下进行退火和退火和延长老化的磁阻和纳米结构的磁阻的磁场依赖性。 磁阻曲线形状的变化用于识别纳米结构的磁状态的变化。 研究了纳米结构的微观结构。 发现了伪旋转阀的微观结构和磁阻性能的变化,这是由退火和储存引起的。 结果是在CoFe / Dy界面处的形成Dy-Co-Fe铁磁性合金的形成解释。

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