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Dynamics of the magnetic field-induced first order magnetic-structural phase transformation of Gd5(Si0.5Ge0.5)4

机译:磁场诱导的Gd5(Si0.5Ge0.5)4一阶磁结构相变动力学

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摘要

The system Gd5(SixGe1−x)4 for 0.4⩽x⩽0.5 has been shown to have an unusual first order, coupled magnetic-structural phase transformation at the Curie temperature. Above the transformation temperature Tc, the material is paramagnetic with a monoclinic structure; below Tc, it is ferromagnetic with an orthorhombic structure. Another unusual feature of this phase transformation is that an applied magnetic field can increase Tc by 5 K per tesla. In this study, the magnetic-structural transformation in single crystalGd5Si2Ge2 was triggered by holding the sample at a temperature just above Tc, then using an applied field to increase Tc beyond the sample temperature, thereby inducing the magnetic-structural transformation. The dynamics of this field-induced phase transformation at various temperatures just above Tc were observed by measuring the magnetization as a function of time. This magnetization change is caused by the first order phase transformation which is distinctly different from the magnetization reversal which one observes in conventional magnetic relaxation experiments. The transformation could be modeled as a thermal activation process with a single energy barrier of height4.2±0.2 eV.
机译:对于0.4⩽x⩽0.5的系统Gd5(SixGe1-x)4已显示出在居里温度下具有不寻常的一阶耦合磁-结构相变。高于转变温度Tc时,该材料是具有单斜晶结构的顺磁性;在Tc以下,它是具有正交结构的铁磁性。此相变的另一个不寻常的特征是,施加的磁场可使每特斯拉Tc增大5K。在这项研究中,通过将样品保持在刚好高于Tc的温度下触发单晶Gd5Si2Ge2的磁结构转变,然后使用外加磁场将Tc升高到超过样品温度,从而引发磁结构转变。通过测量随时间变化的磁化强度,可以观察到在刚好高于Tc的各种温度下这种场感应相变的动力学。这种磁化变化是由一阶相变引起的,它与常规磁弛豫实验中观察到的磁化反转明显不同。可以将转换建模为具有高度为4.2±0.2 eV的单个能垒的热激活过程。

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