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Magnetic force microscopy study of magnetization reversal in sputtered FeSiAl(N) films

机译:溅射FeSiAl(N)薄膜中磁化反转的磁力显微镜研究

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摘要

The magnetization reversal in a series of rf-sputtered FeSiAl(N) films has been studied using magnetic force microscopy. A system has been developed which has the capability to image domain structure while an in-plane magnetic field is applied in situ. All films exhibited a stripe domain structure in zero applied field which was indicative of a perpendicular component of domain magnetization which alternates in sign. All films showed a similar sequence of magnetization processes: on reducing the applied field from saturation a fine stripe domain structure nucleated and then coarsened as the field was decreased to zero. Local switching of domain contrast was observed along the steepest part of the hysteresis loop as the perpendicular component reversed. As the reverse field was increased toward saturation, the stripe domains disintegrated into smaller regions. This observation is consistent with an interpretation that the domain magnetization rotated locally into the sample plane. The saturation field and the film stress exhibited similar trends with nitrogen partial pressure. The results suggest that the perpendicular anisotropy that caused the formation of the stripe domain structure could be induced by the film stress via magnetoelastic coupling.
机译:使用磁力显微镜研究了一系列射频溅射的FeSiAl(N)薄膜中的磁化反转。已经开发了一种系统,该系统具有在原位施加面内磁场的同时对畴结构成像的能力。所有膜在零施加场中均显示出条纹畴结构,这表明畴磁化的垂直分量以符号交替。所有的薄膜都显示出相似的磁化过程顺序:在减小施加的磁场使其饱和时,细的磁畴结构会形核,然后随着磁场减小至零而变粗糙。当垂直分量反转时,沿着磁滞回线的最陡部分观察到区域对比度的局部切换。随着反向磁场向饱和方向增加,条带区域分解为较小的区域。该观察结果与磁畴局部旋转到样品平面中的解释是一致的。饱和场和膜应力在氮分压下表现出相似的趋势。结果表明,引起磁条耦合的垂直各向异性可以由膜应力通过磁弹性耦合引起。

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