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Hysteresis and temperature-induced transitions in ferromagnetic materials

机译:铁磁材料中的磁滞和温度引起的转变

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摘要

In this paper we present two basic one-dimensional models for the temperature-induced phase-changes in a ferromagnetic material. In the framework of the Ginzburg-Landau theory, we construct suitable thermodynamic potentials from which thermodynami-cally-consistent evolution equations for the magnetization are derived. For both soft and hard materials these models account for saturation and provide an effective description of the transition from paramagnetic to ferromagnetic regimes by displaying the onset of hysteresis loops when the temperature decreases below the Curie critical value. The temperature enters the model as a parameter by way of the magnetic susceptibility. Such a dependence is discussed in order to comply with both Bloch's law (below the critical value) and Curie-Weiss law (far above the critical value). Focusing on uniform processes, numerical simulations of the magnetic responses at different temperatures are performed.
机译:在本文中,我们针对铁磁材料中温度感应的相变提出了两个基本的一维模型。在Ginzburg-Landau理论的框架内,我们构造了合适的热力学势,从中推导出了磁化的热动力学一致的演化方程。对于软材料和硬材料,这些模型都考虑了饱和,并通过显示当温度降低到居里临界值以下时的磁滞回线的开始,有效地描述了从顺磁态到铁磁态的转变。温度通过磁化率作为参数进入模型。为了遵守布洛赫定律(低于临界值)和居里-魏斯定律(远远高于临界值),讨论了这种依赖性。着眼于统一的过程,对不同温度下的磁响应进行了数值模拟。

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