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The effect of interface anisotropy on demagnetization progress in perpendicularly oriented hard/soft exchange-coupled multilayers

机译:界面各向异性对垂直定向的硬/软交换耦合多层的去磁化进展的影响

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摘要

Abstract The demagnetization progress of various hard/soft multilayers with perpendicular crystalline anisotropy has been studied by a micromagnetic model, incorporating the effect of the interface anisotropy, which is evident on the nucleation field when the soft layer thickness is small. Both microscopic and macroscopic hysteresis loops as well as angular distributions for the magnetizations in the thickness direction have been calculated, taking into account of realistic values of the interface anisotropy. The formula for the nucleation field has been derived analytically, where the nucleation field increases linearly with the interface anisotropy for a wide thickness region. While the nucleation field could change by more than 90% due to the influence of the interface anisotropy, the interface anisotropy has no effect on the pinning field or the coercivity, but it has some slight influence on the angular distributions. On the other hand, positive interface anisotropy enhances the remanence and the energy products, whereas negative interface anisotropy deteriorates both of them. Comparison with the experimental data justifies our calculation, indicating that negative interface anisotropy should be avoided in the experiment.
机译:抽象具有垂直晶体各向异性各种硬/软多层膜的退磁进展已经研究了微磁模型,结合界面各向异性,其上成核场是明显的,当软质层厚度小的效果。两个微观和宏观的磁滞回线,以及用于在厚度方向上的磁化角分布已被计算,考虑到界面的各向异性现实的值。为成核场的公式已经导出解析,其中,所述成核场与用于宽厚度区域的界面各向异性线性增加。虽然核场可以减少超过90%,由于界面各向异性的影响发生变化,界面各向异性对钉扎场或矫顽力没有影响,但其对角分布一些轻微的影响。在另一方面,积极界面各向异性提高剩磁和能源产品,而负的界面各向异性恶化他们两个。与实验数据的比较证明我们的计算,表明负界面各向异性应在实验来避免。

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