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Thermally induced magnetization switching in Gd/Fe multilayers

机译:Gd / Fe多层膜的热致磁化转换

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摘要

A theoretical model of Gd/Fe multilayers is constructed using the atomistic spin dynamics formalism. By varying the thicknesses and number of layers we have shown that a strong dependence of the energy required for thermally induced magnetization switching (TIMS) is present; with a larger number of interfaces, lower energy is required. The results of the layer resolved dynamics show that the reversal process of the multilayered structures, similar to that of a GdFeCo alloy, is driven by the antiferromagnetic interaction between the transition-metal and rare-earth components. Finally, while the presence of the interface drives the reversal process, we show here that the switching process does not initiate at the surface but from the layers furthest from it, a departure from the alloy behavior which expands the classes of material types exhibiting TIMS.
机译:利用原子自旋动力学形式主义构建了Gd / Fe多层膜的理论模型。通过改变层的厚度和数量,我们已经表明,存在着对热感应磁化转换(TIMS)所需能量的强烈依赖;如果接口数量较多,则需要较低的能量。层解析动力学的结果表明,与GdFeCo合金相似的多层结构的逆过程是由过渡金属和稀土元素之间的反铁磁相互作用驱动的。最后,虽然界面的存在驱动着逆转过程,但我们在这里表明,转换过程不是在表面开始,而是从最远的层开始,这与合金行为背道而驰,合金行为扩展了表现出TIMS的材料类型的类别。

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