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Non-hysteretic first-order phase transition with large latent heat and giant low-field magnetocaloric effect

机译:具有大潜热和巨大的低场磁热效应的非迟滞一阶相变

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First-order magnetic transitions (FOMTs) with a large discontinuity in magnetization are highly sought in the development of advanced functional magnetic materials. Isosymmetric magnetoelastic FOMTs that do not perturb crystal symmetry are especially rare, and only a handful of material families, almost exclusively transition metal-based, are known to exhibit them. Yet, here we report a surprising isosymmetric FOMT in a rare-earth intermetallic, Eu2In. What makes this transition in Eu2In even more remarkable is that it is associated with a large latent heat and an exceptionally high magnetocaloric effect in low magnetic fields, but with tiny lattice discontinuities and negligible hysteresis. An active role of the Eu-5d and In-4p states and a rather unique electronic structure borne by In to Eu charge transfer, altogether result in an unusual exchange mechanism that both sets the transition in motion and unveils an approach toward developing specific magnetic functionalities ad libitum.
机译:在高级功能磁性材料的开发中,强烈要求在磁化过程中具有大的不连续性的一阶磁性跃迁(FOMT)。不会扰动晶体对称性的等对称磁弹性FOMT尤其罕见,并且只有少数材料族(几乎完全是基于过渡金属的)表现出它们。然而,在这里我们报道了一种在稀土金属间化合物Eu2In中令人惊讶的等对称FOMT。使得Eu2In跃迁更为显着的是,它与大的潜热以及在低磁场中异常高的磁热效应有关,但具有微小的晶格间断和可忽略的磁滞。 Eu-5d和In-4p态的积极作用以及In到Eu电荷转移所具有的相当独特的电子结构,共同导致了一种异常的交换机制,该交换机制既启动了运动的过渡,又揭示了开发特定磁性功能的方法随意。

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