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Combinatorial study of Fe-Co-V hard magnetic thin films

机译:Fe-Co-V硬磁薄膜的组合研究

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摘要

Thin film libraries of Fe-Co-V were fabricated by combinatorial sputtering to study magnetic and structural properties over wide ranges of composition and thickness by high-throughput methods: synchrotron X-ray diffraction, magnetometry, composition, and thickness were measured across the Fe-Co-V libraries. In-plane magnetic hysteresis loops were shown to have a coercive field of 23.9 kA m–1 (300 G) and magnetization of 1000 kA m–1. The out-of-plane direction revealed enhanced coercive fields of 207 kA m–1 (2.6 kG) which was attributed to the shape anisotropy of column grains observed with electron microscopy. Angular dependence of the switching field showed that the magnetization reversal mechanism is governed by 180° domain wall pinning. In the thickness-dependent combinatorial study, co-sputtered composition spreads had a thickness ranging from 50 to 500 nm and (Fe70Co30)100-xVx compositions of x = 2–80. Comparison of high-throughput magneto-optical Kerr effect and traditional vibrating sample magnetometer measurements show agreement of trends in coercive fields across large composition and thickness regions.
机译:通过组合溅射法制备了Fe-Co-V薄膜库,以通过高通量方法研究了广泛的组成和厚度范围内的磁性和结构性质:在整个Fe上测量了同步加速器X射线衍射,磁力测定,组成和厚度-Co-V库。平面内磁滞回线的矫顽场为23.9 kA m -1 (300 G),磁化强度为1000 kA m -1 。面外方向显示出207 kA m -1 (2.6 kG)的矫顽场增强,这归因于电子显微镜观察到的柱状晶粒的形状各向异性。开关磁场的角度依赖性表明,磁化反转机制受180°畴壁钉扎的支配。在取决于厚度的组合研究中,共同溅射的成分扩散层的厚度范围为50至500 nm,(Fe70Co30)100-xVx成分的x = 2至80。高通量磁光Kerr效应与传统振动样品磁强计测量结果的比较表明,在大成分和厚度区域内矫顽场的趋势一致。

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