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Numerical Study of Enhanced Coercivity of a Magnetically Hard Grain with Thin Surface Layers due to Antiferromagnetic Coupling

机译:反铁磁耦合作用下薄表面层硬磁颗粒增强矫顽力的数值研究

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摘要

The effects of a thin ferromagnetic layer covering a magnetically hard grain on the coercivity were calculated based on micromagnetic theory. Antiferromagnetic exchange coupling between this thin ferromagnetic surface layer (SF layer) and the hard grain was found to prevent nucleation of reverse domains at the surface of the hard grain and to increase the coercivity. This was effective for hard grains with a layer of reduced magnetic anisotropy on their surfaces whose thickness is comparable with the exchange length. It was also found that a SF layer thickness of several nanometers is suitable. The effects were simulated for a hard grain with SF layers coupled both ferromagnetically and antiferromagnetically. It was found that the coercivity can be enhanced by antiferromagnetically coupled SF layers lying parallel to the easy magnetization axis of the hard grain.
机译:基于微磁理论计算了覆盖硬磁性颗粒的薄铁磁层对矫顽力的影响。发现在该薄铁磁表面层(SF层)和硬质晶粒之间的反铁磁交换耦合防止硬质晶粒的表面处的反向畴核化并提高矫顽力。这对于在其表面上的厚度与交换长度相当的硬晶粒具有减小的磁各向异性的层是有效的。还发现几纳米的SF层厚度是合适的。模拟了具有SF层的铁和反铁磁耦合的硬晶粒的影响。已经发现,通过平行于硬晶粒的易磁化轴放置的反铁磁耦合的SF层可以提高矫顽力。

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