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Scaling analysis of minor hysteresis loops in ferromagnets with large uniaxial anisotropy

机译:具有大单轴各向异性的铁磁体中小滞后环的缩放分析

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Scaling power-law rules of minor hysteresis loops have been examined in the wide temperature range for Co and Gd polycrystals. While the usual Steinmetz law between hysteresis loss and maximum magnetization holds true for Gd with weak magnetocrystalline anisotropy, a large deviation of the Steinmetz exponent from 1.6 to 2.1 was obtained for Co, possibly due to the strong uniaxial anisotropy which results in a largely different magnetic response for each grain against applied fields. On the other hand, a scaling power-law rule between hysteresis loss and remanence of the minor loops was found to be universal and almost the same exponent of 1.4 was obtained, being independent of types of ferromagnets and temperature. These observations were explained on the basis of Rayleigh law.
机译:在CO和GD多晶体的宽温度范围内研究了缩放功率法规的次要滞后环。虽然滞后损失和最大磁化之间的通常的斯坦梅尔州法律适用于具有弱磁镀各向异性的GD的真实,但是对于CO,可能是由于强大的单轴各向异性,因此可以获得从1.6〜2.1的大偏差。导致大量不同的磁性对应用领域的每种谷物的响应。另一方面,发现滞后损失与次要环循环的剩磁之间的缩放幂规律是通用的,并且获得了几乎相同的1.4指数,与铁磁体和温度的类型无关。在瑞利法律的基础上解释了这些观察。

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