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Magnetic reconfiguration of MnAs/GaAs(001) observed by magnetic force microscopy and resonant soft x-ray scattering

机译:磁力显微镜和共振软X射线散射观察到的MnAs / GaAs(001)的磁重构

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摘要

We investigated the thermal evolution of the magnetic properties of MnAs epitaxial films grown on GaAs(001) during the coexistence of hexagonal/orthorhombic phases using polarized resonant (magnetic) soft x-ray scattering and magnetic force microscopy. The results of the diffuse satellite x-ray peaks were compared to those obtained by magnetic force microscopy and suggest a reorientation of ferromagnetic terraces as temperature rises. By measuring hysteresis loops at these peaks we show that this reorientation is common to all ferromagnetic terraces. The reorientation is explained by a simple model based on the shape anisotropy energy. Demagnetizing factors were calculated for different configurations suggested by the magnetic images. We noted that the magnetic moments flip from an in-plane monodomain orientation at lower temperatures to a three-domain out-of-plane configuration at higher temperatures. The transition was observed when the ferromagnetic stripe width L is equal to 2.9 times the film thickness d. This is in good agreement with the expected theoretical value of L=2.6d.
机译:我们使用极化共振(磁性)软X射线散射和磁力显微镜研究了六方相/斜方相共存期间在GaAs(001)上生长的MnAs外延膜的磁性的热演化。将漫射卫星X射线峰的结果与通过磁力显微镜获得的结果进行了比较,结果表明随着温度的升高,铁磁阶地会重新定向。通过测量这些峰值处的磁滞回线,我们表明这种重新定向是所有铁磁阶跃所共有的。通过基于形状各向异性能的简单模型解释了重新定向。针对磁图像建议的不同配置计算了退磁因子。我们注意到,磁矩从较低温度下的平面内单畴取向转变为较高温度下的三畴平面外构型。当铁磁条宽度L等于膜厚度d的2.9倍时,观察到转变。这与L = 2.6d的预期理论值高度吻合。

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