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Simulation of the Magnetocaloric Effect in Tb Nanofilms.

机译:Tb纳米丝磁热效应的模拟。

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Rare-earth (RE) metals have different magnetic structures resulting from the competition between the crystalfield and exchange interactions. When a magnetic field is applied it creates a third interaction and the magnetic structures are more complicated. In thin films, it is expected that even the magnetic arrangement itself can be strongly modified. Rare-earth helimagnets such as Terbium (Tb), Holmium (Ho) and Dysprosium (Dy) represent the best candidates to evidence such finite-size effects. This finite-size effect is caused by the reduced number of atoms in the direction perpendicular to the film plane that leads to a decrease of the total magnetic exchange energy. We report this contribution to the investigation of magnetocaloric effect (MCE) of thin Terbium films in the helimagnetic temperature range, from T_C = 219 K to T_N = 231 K, for external fields of the order of 1 kOe. We find that for strong fields, H = 50 kOe, the adiabatic temperature change T near the Néel temperature is around 15 K for any thickness of Tb films. However large thickness effects are found for small values of the magnetic field. For field strength of the order of a few kOe, the thermocaloric efficiency increases significantly for ultrathin (nanomagnetic) films.
机译:稀土(RE)金属具有不同磁性结构,由Crystalfield和交换相互作用之间的竞争产生。当施加磁场时,它产生第三相互作用,并且磁性结构更加复杂。在薄膜中,预计甚至可以强烈地修改磁性布置本身。稀土绝缘(如铽(TB),钬(HO)和镝(DY)代表了证据诸如有限尺寸效应的最佳候选者。这种有限尺寸的效果是由垂直于薄膜平面的方向上的减少的原子引起的,从而导致总磁交换能量的减少。我们向从T_C = 219K至T_N = 231K进行了1 koe的外部领域的T_c = 219k至t_n = 231k对薄铽膜的磁热效果(MCE)的研究报告了这一贡献。我们发现,对于强大的领域,H = 50只koe,Néel温度附近的绝热温度变化对于任何厚度的Tb膜约为15 k。然而,找到了磁场的小值的厚度效果。对于少数koe的阶段强度,用于超薄(纳米磁性)薄膜的热致效率显着增加。

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