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Nanostructuring as a procedure to control the field dependence of the magnetocaloric effect

机译:纳米结构作为控制磁热效应的场依赖性的程序

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In this work, the field dependence of the magnetocaloric effect of Gd bulk samples has been enhanced through nanostructuring of the material. Nanostructuring consists in multilayers preparation by alternative rf-sputtering deposition of Gd layers and Ti spacers onto glass substrates. The results obtained for the multilayers were compared to those obtained for the Gd bulk. Assuming a power law for the field dependence of the magnetic entropy change (Delta S-M alpha H-n), higher field dependences close to the transition in a wider temperature range are obtained for the multilayer material (n=1.0) with respect to the bulk counterpart (n=0.78). The effect of a Curie temperature distribution in the multilayer material (due to variations of the layer thickness) has been studied through numerical simulations to explain the observed field dependence of the magnetocaloric effect, obtaining a remarkable agreement between experiments and results. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在这项工作中,Gd块状样品的磁热效应的场依赖性已经通过材料的纳米结构得到了增强。纳米结构化是通过在玻璃基板上进行交替的rf溅射沉积Gd层和Ti间隔层来进行多层制备。将多层获得的结果与Gd块获得的结果进行比较。假设磁熵变的场依存性为幂律(Delta SM alpha Hn),则多层材料(n = 1.0)相对于体相( n = 0.78)。通过数值模拟研究了居里温度分布在多层材料中的影响(由于层厚度的变化),以解释所观察到的磁热效应的场依赖性,从而在实验和结果之间取得了显着的一致性。 (C)2016 Elsevier Ltd.保留所有权利。

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