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Thermodynamics of multicaloric effects in multiferroic materials; application to metamagnetic shape memory alloys and ferrotoroidics

机译:多铁材料中多热效应的热力学;在超磁性形状记忆合金和铁磁合金中的应用

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摘要

We develop a general thermodynamic framework to investigate multicaloric effects in multiferroic materials. This is applied to the study of both magnetostructural and magnetoelectric multiferroics. Landau models with appropriate interplay between the corresponding ferroic properties (order parameters) are proposed for metamagnetic shapememory and ferrotoroidic materials, which, respectively, belong to the two classes of multiferroics. For each ferroic property, caloric effects are quantified by the isothermal entropy change induced by the application of the corresponding thermodynamically conjugated field. The multicaloric effect is obtained as a function of the two relevant applied fields in each class of multiferroics. It is further shown that multicaloric effects comprise the corresponding contributions from caloric effects associated with each ferroic property and the crosscontribution arising from the interplay between these ferroic properties. This article is part of the themed issue 'Taking the temperature of phase transitions in cool materials'
机译:我们开发了一个通用的热力学框架来研究多铁材料中的多热量效应。这被应用于磁结构和磁电多铁学的研究。提出了分别对应于两类多铁性材料的超磁形状记忆和铁磁材料的在相应铁性质(有序参数)之间具有适当相互作用的Landau模型。对于每种铁性性质,通过应用相应的热力学共轭场引起的等温熵变来量化热效应。多热量效应是根据每一类多铁性物质中两个相关应用场的函数获得的。进一步表明,多热效应包括来自与每个铁磁性质相关的热效应的相应贡献以及由这些铁磁性质之间的相互作用产生的交叉贡献。本文是主题主题“考虑冷材料中的相变温度”的一部分

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