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Loss Separation for Dynamic Hysteresis in Ferromagnetic Thin Films

机译:铁磁薄膜中动态磁滞的损耗分离

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摘要

We develop a theory for dynamic hysteresis in ferromagnetic thin films, on the basis of the pheno-menological principle of loss separation. We observe that, remarkably, the theory of loss separation, originally derived for bulk metallic materials, is applicable to disordered magnetic systems under fairly general conditions regardless of the particular damping mechanism. We confirm our theory both by numerical simulations of a driven random-field Ising model, and by reexamining several experimental data reported in the literature on dynamic hysteresis in thin films. All the experiments examined and the simulations find a natural interpretation in terms of loss separation. The power losses' dependence on the driving field rate predicted by our theory fits satisfactorily all the data in the entire frequency range, thus reconciling the apparent lack of universality observed in different materials.
机译:我们基于损耗分离的现象学原理,开发了铁磁薄膜中动态磁滞的理论。我们注意到,值得注意的是,最初从散装金属材料得出的损耗分离理论适用于相当普遍的条件下的无序磁系统,而不管其特定的阻尼机制如何。我们通过驱动随机场Ising模型的数值模拟,以及通过重新检查文献中报道的有关薄膜动态磁滞现象的一些实验数据,来证实我们的理论。所有检查的实验和模拟在损耗分离方面都找到了自然的解释。根据我们的理论预测,功率损耗对驱动场速率的依赖性可以令人满意地拟合整个频率范围内的所有数据,因此可以解决在不同材料中明显缺乏通用性的问题。

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