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Periodic magnetic anisotropy in ultrathin ferromagnetic films on faceted surfaces

机译:刻面表面超薄铁磁膜中的周期性磁各向异性

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摘要

Since faceted surfaces lower the dimensionality of the surface, they are an ideal template to nanostructure magnetic stripes. In particular, it is possible to obtain an alternatively in- and out-of-plane magnetization in thin films deposited on periodically faceted surfaces. The periodicity of the surface can be replicated in the magnetization by the magnetoelastic anisotropy. The effect is particularly relevant for a film thickness close to the spin reorientation transition. In these conditions, the divergence of the magnetoelastic anisotropy near the facet edges forces in- plane magnetization regions in the faceted surface, while unfaceted surfaces corresponding to single facets present an out-of-plane easy axis. The magnetic anisotropy can thus be controlled at a nanometer scale by using a faceted substrate.
机译:由于刻面表面降低了表面的尺寸,因此它们是纳米结构磁条的理想模板。特别地,可以在沉积在周期性刻面的表面上的薄膜中获得交替的面内和面外磁化。表面的周期性可以通过磁弹性各向异性在磁化过程中复制。对于接近自旋重新取向转变的膜厚度,该效果特别重要。在这些条件下,靠近刻面边缘的磁弹性各向异性的发散迫使刻面表面中的平面内磁化区域,而对应于单个刻面的未刻面表面呈现出平面外易轴。因此,可以通过使用多面基板将磁各向异性控制在纳米级。

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