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首页> 外文期刊>Journal of Applied Physics >Nanoconstricted structure for current-confined path in current-perpendicular-to-plane spin valves with high magnetoresistance
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Nanoconstricted structure for current-confined path in current-perpendicular-to-plane spin valves with high magnetoresistance

机译:具有高磁阻的电流垂直平面自旋阀中电流受限路径的纳米压缩结构

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摘要

We have successfully observed a nanoconstricted structure for current-confined-path (CCP) effect in current-perpendicular-to-plane-giant-magnetoresistance (CPP-GMR) spin valves. By inserting an AlCu nano-oxide layer (NOL) formed by ion-assisted oxidation (IAO) between a pinned layer and a free layer, the MR ratio was increased while maintaining a small area resistance product (RA). The cross-sectional high-resolution transmission electron microscopy image of the sample with RA = 380 mΩ μm~2, A=16 mΩ μm~2, and MR ratio=4.3% showed that an amorphous oxide layer is a main part of the NOL that blocks the electron conduction perpendicular to plane. Some parts of the NOL are punched through crystalline, metallic channels having a diameter of a few nanometers, which are thought to work as nanoconstricted electron conduction paths between the pinned layer and the free layer. Nano-energy-dispersive-x-ray-spectrum analysis also showed that Cu is enriched in the metallic channels, whereas Al is enriched in the amorphous oxide region, indicating that the metallic channel is made of Cu and the oxide is made of Al_2O_3. The nanoconstricted structure with good segregation between the metallic channel and the oxide layer enables us to realize a large MR ratio in CCP-CPP spin valves.
机译:我们已经成功地在电流垂直于平面的巨磁阻(CPP-GMR)自旋阀中观察到了电流限制路径(CCP)效应的纳米压缩结构。通过在固定层和自由层之间插入通过离子辅助氧化(IAO)形成的AlCu纳米氧化物层(NOL),可以在保持较小面积电阻乘积(RA)的同时提高MR比。 RA = 380mΩμm〜2,A= 16mΩμm〜2和MR比= 4.3%的样品的截面高分辨率透射电子显微镜图像表明,非晶氧化物层是其中的主要部分NOL阻止垂直于平面的电子传导。 NOL的某些部分穿过直径为几纳米的晶体金属通道,这些通道被认为是在固定层和自由层之间的纳米收缩电子传导路径。纳米能量色散X射线光谱分析还表明,Cu在金属通道中富集,而Al在非晶氧化物区域中富集,表明金属通道由Cu制成,并且氧化物由Al_2O_3制成。在金属通道和氧化物层之间具有良好隔离的纳米压缩结构使我们能够在CCP-CPP旋转阀中实现较大的MR比。

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