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首页> 外文期刊>Journal of magnetism and magnetic materials >Dynamic phase transitions in a cylindrical Ising nanowire under a time-dependent oscillating magnetic field
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Dynamic phase transitions in a cylindrical Ising nanowire under a time-dependent oscillating magnetic field

机译:圆柱伊辛纳米线在时间相关的振荡磁场下的动态相变

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The dynamic phase transitions in a cylindrical Ising nanowire system under a time-dependent oscillating external magnetic field for both ferromagnetic and antiferromagnetic interactions are investigated within the effective-field theory with correlations and the Glauber-type stochastic dynamics approach. The effective-field dynamic equations for the average longitudinal magnetizations on the surface shell and core are derived by employing the Glauber transition rates. Temperature dependence of the dynamic magnetizations, the dynamic total magnetization, the hysteresis loop areas and the dynamic correlations are investigated in order to characterize the nature (first- or second order) of the dynamic transitions as well as the dynamic phase transition temperatures and the compensation behaviors. The system strongly affected by the surface situations. Some characteristic phenomena are found depending on the ratio of the physical parameters in the surface shell and the core. According to the values of Hamiltonian parameters, five different types of compensation behaviors in the Neel classification nomenclature exist in the system. The system also exhibits a reentrant behavior.
机译:在有效场理论中,利用相关性和Glauber型随机动力学方法研究了圆柱型伊辛纳米线系统在时间依赖的振荡外部磁场下对铁磁和反铁磁相互作用的动态相变。利用格劳伯跃迁速率推导了表面壳和核上平均纵向磁化强度的有效场动力学方程。研究动态磁化强度,动态总磁化强度,磁滞回线面积和动态相关性的温度依赖性,以表征动态跃迁的性质(一阶或二阶)以及动态相变温度和补偿行为。该系统受表面情况的影响很大。根据表壳和核中物理参数的比率,发现了一些特征现象。根据哈密顿参数的值,系统中存在五种不同的Neel分类命名法中的补偿行为。该系统还表现出可重入的行为。

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