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Dynamic Scaling Behavior of Nucleation and Saturation Field During Magnetization Reversal of Co/Pt Multilayers

机译:Co / Pt多层磁化反转过程中成核和饱和场的动态缩放行为

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We have discovered that there exist dynamic scaling behaviors for the nucleation and the saturation field in hysteresis loop of Co/Pt multilayer thin films. The dynamic hysteresis measurement was carried out with variation of sweeping rate of cycling fields, which reveals that not only the coercivity and the loop area, well known as the Steinmetz law, but also the nucleation and the saturation field exhibit similar scaling behaviors. We have systematically analyzed the scaling factor of nucleation, coercivity, and saturation phase with respect to the Co sublayer thickness. Local structural configuration depending on the Co sublayer thickness were examined by extended X-ray absorption fine structure, implying that damping parameter and interface effect modifies the coercivity and nucleation scaling factor but does not significantly induce the change in saturation scaling factors.
机译:我们发现在Co / Pt多层薄膜的磁滞回线中存在成核和饱和场的动态缩放行为。动态磁滞测量是通过改变循环场的扫描速率来进行的,这表明不仅矫顽力和环形面积(众所周知的Steinmetz定律),而且成核场和饱和场也表现出相似的缩放行为。我们已经系统地分析了相对于Co子层厚度的成核,矫顽力和饱和相的比例因子。通过扩展的X射线吸收精细结构检查了取决于Co亚层厚度的局部结构构型,这表明阻尼参数和界面效应会修改矫顽力和成核比例因子,但不会显着引起饱和比例因子的变化。

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