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Millisecond Dynamics of the Magnetocaloric Effect in a First- and Second-Order Phase Transition Material

机译:第一和二阶相过渡材料中磁热效应的毫秒动态

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摘要

The millisecond-dynamics of the magnetocaloric effect in Gd and La-Fe-Si-Mn, which exhibit first- and second-order phase-transitions, respectively, are investigated. Direct measurements of the adiabatic temperature change Delta T are obtained from modulation infrared thermometry with field-cycling frequencies exceeding 1 kHz at amplitudes of up to 45 mT. The peak amplitude of Delta T(T) shows a dependence on sample thickness and decreases with increasing modulation frequency for both materials despite a frequency independent susceptibility of Gd. The adiabatic Delta T depends quadratically on the external field for Gd while La-Fe-Si-Mn shows a peculiar bucket-shaped curve for temperatures below the peak maximum. A comparative study of non-caloric samples shows that dissipative heating by eddy currents or magnetic hysteresis does not explain the observed behavior. The transient Delta T(t) instead suggests a mechanism involving strong temperature gradients at the ferromagnetic-paramagnetic boundaries and underlines the importance of further dynamical studies for a fundamental understanding of the magnetocaloric effect in first-order materials.
机译:研究了Gd和La-Fe-Si-Mn中磁热效应的毫秒动态,分别表现出第一和二阶相转变。绝热温度变化Delta T的直接测量从调制红外温度测量,具有超过1kHz的现场循环频率,幅度高达45mt。 ΔT(t)的峰值幅度显示了对样品厚度的依赖性,并且尽管Gd的频率无关地,但两种材料的调制频率的增加率降低。绝热ΔT在基于GD的外部领域上逐步地取决于La-Fe-Si-Mn的诸如低于峰值的温度的特殊桶形曲线。非热量样品的比较研究表明,涡流或磁滞的耗散加热不解释观察到的行为。瞬态ΔT(t)代替涉及涉及铁磁 - 顺磁边界的强温梯度的机制,并强调了进一步动态研究对一流材料中磁热效应的基本理解的重要性。

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