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Highly thermal-stable ferromagnetism by a natural composite

机译:天然复合材料具有高热稳定性的铁磁性

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摘要

All ferromagnetic materials show deterioration of magnetism-related properties such as magnetization and magnetostriction with increasing temperature, as the result of gradual loss of magnetic order with approaching Curie temperature TC. However, technologically, it is highly desired to find a magnetic material that can resist such magnetism deterioration and maintain stable magnetism up to its TC, but this seems against the conventional wisdom about ferromagnetism. Here we show that a Fe–Ga alloy exhibits highly thermal-stable magnetization up to the vicinity of its TC, 880 K. Also, the magnetostriction shows nearly no deterioration over a very wide temperature range. Such unusual behaviour stems from dual-magnetic-phase nature of this alloy, in which a gradual structural-magnetic transformation occurs between two magnetic phases so that the magnetism deterioration is compensated by the growth of the ferromagnetic phase with larger magnetization. Our finding may help to develop highly thermal-stable ferromagnetic and magnetostrictive materials.
机译:随着温度升高,所有铁磁材料都显示出与磁性有关的特性(例如磁化和磁致伸缩)随温度升高而变差的结果,这是随着居里温度TC逐渐降低磁序的结果。然而,在技术上,非常需要找到一种能够抵抗这种磁性劣化并保持稳定的磁性直至其TC的磁性材料,但这似乎与关于铁磁性的传统观点背道而驰。在这里,我们表明,Fe-Ga合金在其TC 880 K附近表现出高度的热稳定磁化强度,而且,在非常宽的温度范围内,磁致伸缩几乎没有变质。这种不正常的行为是由于这种合金的双磁相性质而引起的,在这种性质中,两个磁相之间发生了逐渐的结构-磁性转变,因此,磁化强度的提高可以通过具有较大磁化强度的铁磁相的生长来补偿。我们的发现可能有助于开发高度热稳定的铁磁和磁致伸缩材料。

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