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Annealing temperature dependence on magnetoresistance of single and dual specular spin valve

机译:退火温度对单镜面和双镜面旋转阀磁阻的影响

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摘要

We studied the changes of magnetoresistance ratio (MR ratio), exchange bias field (H-ex), and microstructure with annealing in conventional, specular, and dual specular spin valves. MR ratio of conventional spin valve was 7.88% and that of specular spin valve was 11.8% at their optimal annealing conditions. Conventional spin valve had less thermal stability than specular spin valve due to the diffusion mainly of Mn at between 200 and 305 degrees C. Exchange bias field of both samples was improved rapidly with increasing temperature. Dual specular spin valve showed higher MR ratio than single specular spin valve due to two nano-oxide layers (NOLs) in the top- and bottom-pinned layers. (c) 2004 Elsevier B.V. All rights reserved.
机译:我们研究了常规,镜面和双镜面自旋阀中的磁阻比(MR比),交换偏置场(H-ex)和微观结构随退火的变化。在最佳退火条件下,常规自旋阀的MR比为7.88%,镜面自旋阀的MR率为11.8%。常规自旋阀的热稳定性低于镜面自旋阀,这是由于主要在200至305摄氏度之间的Mn扩散。两种样品的交换偏置场随温度的升高而迅速改善。双镜面自旋阀显示出比单镜面自旋阀更高的MR比,这是由于在顶部和底部固定层中有两个纳米氧化物层(NOL)。 (c)2004 Elsevier B.V.保留所有权利。

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