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Magnetization reversal and magnetic anisotropy in Co network nanostructures

机译:Co网络纳米结构中的磁化反转和磁各向异性

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The magnetization reversal and magnetic anisotropy in Co network structures have been studied using magneto-optic Kerr effect (MOKE). An enhancement of the coercivity is observed in the network structures and is attributed to the pinning of domain walls by the hole edges in the vicinity of which the demagnetizing field spatially varies. We find that the magnetization reversal process is dominated by the intrinsic uniaxial anisotropy (2K/sub u//M/sub s//spl ap/200 Oe) in spite of the shape anisotropy induced by the hole edges. The influence of the cross-junction on the competition between the intrinsic uniaxial anisotropy and the induced shape anisotropy is discussed using micromagnetic simulations.
机译:利用磁光克尔效应(MOKE)研究了Co网络结构中的磁化反转和磁各向异性。在网络结构中观察到矫顽力的增强,这归因于孔边缘钉住畴壁,在孔边缘附近,退磁场在空间上变化。我们发现,尽管孔边缘引起了形状各向异性,但磁化反转过程仍受固有的单轴各向异性(2K / sub u // M / sub s // spl ap / 200 Oe)支配。使用微磁模拟讨论了交叉结对本征单轴各向异性和诱导形状各向异性之间竞争的影响。

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