论文标题
FERH系统中进化元磁相变的3D时间分辨分析
3D time-resolved analysis of the evolution metamagnetic phase transition in FeRh system
论文作者
论文摘要
FERH合金是用于研究磁性一阶相变的有吸引力的材料。 FERH从抗磁磁到铁磁状态的相位转变伴随着铁磁簇的成核,生长和合并。详细研究了铁磁相的演化,并区分了其各个阶段。研究了静态特性和相变动力学(磁化的时间依赖性)。全面的分析使我们能够确定铁磁相成核区域和相生长的主要特征。另外,确定了导致铁磁相生长速率变化的机制(限制效应和磁联效应)。显示了相变演化的主导机制的变化,具体取决于样品微结构。
The FeRh alloy is an attractive material for studies of magnetic first-order phase transitions. The phase transition in FeRh from an antiferromagnetic to the ferromagnetic state is accompanied by the nucleation, growth, and merging of ferromagnetic clusters. The ferromagnetic phase evolution is studied in detail, and its various stages are distinguished. Both static properties and phase transition kinetics (time dependences of magnetization) are investigated. A comprehensive analysis allows us to determine the ferromagnetic phase nucleation regions and the main features of phase growth. In addition, the mechanisms that lead to a change in the ferromagnetic phase growth rate (the limitation effect and the magnetocaloric effect) were determined. The variation of phase transition evolution dominant mechanisms depending on the sample microstructure was shown.