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EFFECT OF INTERACTION IN THE MAGNETIZATION REVERSAL RELAXATION OF SUPERPARAMAGNETIC GRANULAR CoFeB-SiO_2 FILMS

机译:超顺磁性粒状CoFeB-SiO_2薄膜磁化反转弛豫相互作用的影响

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In order to study the magnetic interactions influence on the relaxation processes in superparamagnetic media, the magnetostatic measurements were carried out for the granular (CoFeB)_x-(SiO_2)_(1-x) films with x values near percolation threshold. The observed temperature dependences of the coercivity for the samples magnetized along in-plane easy axis have shown two parts linear on T~(1/2) with different inclination angles, which cross each other at the blocking temperature (T_b). The first part of the curve, which corresponds to the temperature range below T_b, depends on the measuring time and is related to the thermal activation nature of magnetization reversal process in the blocked superparamagnetic state. Second part of the curve, which corresponds to the temperature range above T_b, is practically independent on the measuring time and is related to existence of correlated state of superparamagnetic grains moments, i.e. to superferromagnetic state. The method of the magnetization reversal curves simulation based on the numerical solving of kinetic equation has been applied to explain the experimental results.
机译:为了研究在超顺磁性介质的弛豫过程的磁相互作用的影响,静磁测量进行粒状(的CoFeB)_x-(SiO_2)_(1-x)的薄膜,其中x的值接近渗透阈值。矫顽力为沿面内易轴磁化的样品的观察到的温度依赖性具有不同的倾斜角度,相互交叉在阻塞温度(T_B)示出的两个部分线性上T〜(1/2)。曲线,其对应于所述的温度范围内低于T_B的第一部分,取决于测量时间和在阻塞超顺磁性状态是关系到磁化反转过程的热活化性质。曲线,其对应于温度范围以上的T_B第二部分,几乎是独立于测量时间和涉及超顺磁性颗粒的时刻,即,superferromagnetic状态的相关状态的存在。根据动力学方程的数值求解的磁化反转曲线模拟的方法已被应用到解释实验结果。

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