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The effect of the thickness ratio of magnetic layers on the microstructure and magnetic properties of (CoCrPt)(97.5)Nb-2.5/Co75Cr13Pt12/Cr thin films

机译:磁性层厚度比对(CoCrPt)(97.5)Nb-2.5 / Co75Cr13Pt12 / Cr薄膜的微观结构和磁性能的影响

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摘要

A Co75Cr13Pt12 intermediate magnetic layer was deposited between the (CoCrPt)(97.5)Nb-2.5 upper magnetic layer and chromium underlayer by the magnetron sputtering technique. The effect of the thickness ratio of two magnetic layers and post-annealing treatment on the microstructure and magnetic properties of the films were investigated. The magnetic characteristics of the films were obtained by magnetic force microscopy, hysteresis loops and switching field distribution curves. Although annealing had no significant effect on the layer roughness, it rotated the easy axis of the magnetic layer towards the film plane, thereby enhanced the coercivity. The results showed an impressive effect of the magnetic intermediate layer thickness and post-annealing on the improving of coercivity through isolation of the magnetic grains. Formation of a non-magnetic halo around the magnetic grains reduced the inter-granular magnetostatic interaction.
机译:通过磁控溅射技术在(CoCrPt)(97.5)Nb-2.5上磁性层和铬下层之间沉积Co75Cr13Pt12中间磁性层。研究了两个磁性层的厚度比和退火后处理对薄膜微观结构和磁性的影响。通过磁力显微镜,磁滞回线和开关场分布曲线获得薄膜的磁性。尽管退火对层粗糙度没有显着影响,但是它使磁性层的易轴朝向膜平面旋转,从而提高了矫顽力。结果表明,磁性中间层厚度和后退火对通过隔离磁性颗粒改善矫顽力具有显着影响。在磁性颗粒周围形成非磁性的光晕会降低晶粒间的静磁相互作用。

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