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Dynamics of the First-Order Metamagnetic Transition in Magnetocaloric La(Fe,Si)13: Reducing Hysteresis

机译:磁热La(Fe,Si)13中一阶亚磁跃迁的动力学:减少磁滞

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摘要

The influence of dynamics and sample shape on the magnetic hysteresis in first-order magnetocaloric metamagnetic LaFe13–xSix with x = 1.4 is studied. In solid-state magnetic cooling, reducing magnetic and thermal hysteresis is critical for refrigeration cycle efficiency. From magnetization measurements, it is found that the fast field-rate dependence of the hysteresis can be attributed to extrinsic heating directly related to the thickness of the sample and the thermal contact with the bath. If the field is paused partway through the transition, the subsequent relaxation is strongly dependent on shape due to both demagnetizing fields and thermal equilibration; magnetic coupling between adjacent sample fragments can also be significant. Judicious shaping of the sample can both increase the onset field of the ferromagnetic–paramagnetic (FM–PM) transition but have little effect on the PM–FM onset, suggesting a route to engineer the hysteresis width by appropriate design. In the field-paused state, the relaxation from one phase to the other slows with increasing temperature, implying that the process is neither thermally activated or athermal; comparison with the temperature dependence of the latent heat strongly suggests that the dynamics reflect the intrinsic free energy difference between the two phases.
机译:研究了动力学和样品形状对x = 1.4的一阶磁热亚磁LaFe13–xSix的磁滞的影响。在固态磁冷却中,减少磁滞和热滞对于提高制冷循环效率至关重要。从磁化测量发现,磁滞的快速场速率依赖性可以归因于与样品厚度以及与镀液的热接触直接相关的外在加热。如果磁场在过渡过程中途中止,则由于磁场消磁和热平衡,随后的松弛很大程度上取决于形状。相邻样品片段之间的磁耦合也很重要。明智地对样品进行整形既可以增加铁磁-顺磁(FM-PM)过渡的起始场,但对PM-FM起始的影响很小,这表明通过适当的设计来设计磁滞宽度的途径。在磁场暂停状态下,从一相到另一相的弛豫随着温度的升高而减慢,这表明该过程既不是热激活的也不是无热的。与潜热的温度依赖性的比较强烈表明,动力学反映了两相之间的固有自由能差。

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