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Magnetic relaxation dynamics driven by the first-order character of magnetocaloric La(FeMnSi)13

机译:磁热La(FeMnSi)13的一阶特性驱动的磁弛豫动力学

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摘要

Here, we study the temporal evolution of the magnetic field-driven paramagnetic to ferromagnetic transition in the La(Fe,Mn,Si)13 material family. Three compositions are chosen that show varying strengths of the first-order character of the transition, as determined by the relative magnitude of their magnetic hysteresis and temperature separation between the zero-field transition temperature Tc and the temperature Tcrit, where the transition becomes continuous. Systematic variations in the fixed field, isothermal rate of relaxation are observed as a function of temperature and as a function of the degree of first-order character. The relaxation rate is reduced in more weakly first-order compositions and is also reduced as the temperature is increased towards Tcrit. At temperatures above Tcrit, the metastability of the transition vanishes along with its associated temporal dynamics.This article is part of the themed issue ‘Taking the temperature of phase transitions in cool materials’.
机译:在这里,我们研究了La(Fe,Mn,Si)13材料族中磁场驱动的顺磁到铁磁跃迁的时间演化。选择三种成分,这些成分显示出转变的一阶特性的变化强度,这取决于其磁滞的相对大小以及零场转变温度Tc和温度Tcrit之间的温度分离,在该温度下转变变得连续。固定场的系统变化,等温弛豫速率随温度和一阶特征程度而变化。在较弱的一级组合物中,弛豫速率降低,并且随着温度朝着Tcrit升高,弛豫速率也降低。在高于Tcrit的温度下,过渡的亚稳定性及其相关的时间动态消失。本文是主题主题“在冷材料中获取相变的温度”的一部分。

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