Explanation of Giant Magnetoresistance Effect in Magnetic Co/Cu/Co Sandwiches

L. Dekhtyaruk, Y. Shkurdoda, Yu.M. Shabelnyk, A. Saltykova, A. Chornous, A. P. Kharchenko, V. Virchenko
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Abstract

Using a two-current model [1], [2] and the theory of dimensional effects [3], [4], a qualitative analysis of the giant magnetoresistance effect in a three-layer magnetically ordered film (sandwich), which is quantitatively characterized by a magnetoresistance ratio (MRR) $\delta$, was presented. It was shown that in the region of small thickness of the magnetic covering layer, in comparison with the thickness of the basic metal layer and the non-magnetic layer, the MRR of the conductor increased, while in the opposite region of the thickness of the magnetic covering layer, the opposite trend is observed, namely, the value of $\delta$ decreased. In the case when the thickness of the magnetic covering layer of the metal coincided with the total thickness of the basic magnetic layer and the non-magnetic layer, the MRR reached its maximum value due to the absence of a shunt effect.
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磁性Co/Cu/Co夹层中巨磁阻效应的解释
采用双电流模型[1],[2]和量纲效应理论[3],[4],定性分析了三层磁有序薄膜(三明治)中的巨磁阻效应,并以磁阻比(MRR) $\delta$为定量表征。结果表明,在磁覆盖层厚度较小的区域,与基本金属层和非磁性层的厚度相比,导体的MRR增加,而在磁覆盖层厚度相反的区域,则观察到相反的趋势,即$\delta$的值减小。当金属的磁性覆盖层厚度与基本磁性层和非磁性层的总厚度一致时,由于没有分流效应,MRR达到最大值。
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