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Enhanced giant magnetoimpedance effect and field sensitivity in Co-coated soft ferromagnetic amorphous ribbons

机译:Co-Coated软铁磁非晶带中增强的巨磁阻抗效应和场灵敏度

摘要

A 50 nm-thick Co film has been grown either on the free surface(surface roughness, ∼6 nm) or on the wheel-side surface(surface roughness, ∼147 nm) of Co84.55Fe4.45Zr7B4amorphous ribbons. A comparative study of the giant magnetoimpedance (GMI) effect and its field sensitivity (η) in the uncoated and Co-coated ribbons is presented. We show that the presence of the Co coating layer enhances both the GMI ratio and η in the Co-coated ribbons. Larger values for GMI ratio and η are achieved in the sample with Co coated on the free ribbon surface. The enhancement of the GMI effect in the Co-coated ribbons originates mainly from the reduction in stray fields due to surface irregularities and the enhanced magnetic flux paths closure. These findings provide good guidance for tailoring GMI in surface-modified soft ferromagnetic ribbons for use in highly sensitive magnetic sensors.
机译:在Co84.55Fe4.45Zr7B4非晶态碳带的自由表面(表面粗糙度约为6 nm)或在轮侧表面(表面粗糙度约为147 nm)上生长了50 nm厚的Co膜。提出了在未涂层和涂层带中的巨磁阻(GMI)效应及其场灵敏度(η)的比较研究。我们表明,Co涂层的存在增强了Co涂层带中的GMI比和η。在自由碳带表面上涂有Co的样品中,GMI比和η值更大。涂层碳带中GMI效应的增强主要来自表面不规则性引起的杂散磁场的减少和磁通路径封闭性的增强。这些发现为在高灵敏度磁传感器中使用的表面改性软铁磁带中定制GMI提供了很好的指导。

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