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Tailoring structural and magnetic properties of Mn3−xFexGa alloys towards multifunctional applications

机译:为多功能应用量身定制Mn3-xFexGa合金的结构和磁性

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摘要

This study investigated the structural and magnetic properties of Mn3−xFexGa alloys (x = 0, 0.2, 0.4, 0.6, 0.8, 1) under different heat-treatment conditions. A tetragonal structure was observed in samples that were heat treated at 623 K for three days followed by quenching in ice water. These tetragonal alloys present large coercive fields in the range 0.8–5 kOe and low saturation magnetization, and have great potential for application in spin-transfer torque-based devices. A hexagonal structure was observed in samples subjected to heat treatment at 883 K for three days following quenching in ice water. A moderate decrease in the coercive field has been observed for the hexagonal alloys compared with those with a tetragonal structure. However, the Mn3−xFexGa alloys with a hexagonal structure exhibit other attractive magnetic properties, including collinear and non-collinear magnetic properties, holding high promise for technological applications. A face-centred-cubic (f.c.c.) structure was observed when subjected to annealing at 1073 K for three days followed by quenching in ice water. In contrast to the tetragonal and hexagonal structures, all f.c.c. alloys exhibit antiferromagnetic behaviour. This versatile material can display a wide range of multi-functionalities attributed to its tuneable crystal structure. This investigation will guide the design of multiple structures of these materials in order to utilise the wide functionalities for practical applications.
机译:这项研究研究了在不同热处理条件下Mn3-xFexGa合金(x = 0、0.2、0.4、0.6、0.8、1)的结构和磁性。在623 K下热处理三天,然后在冰水中淬灭的样品中观察到四方结构。这些四方合金具有0.8-5 kOe的大矫顽场和低饱和磁化强度,并且在基于自旋转移矩的装置中具有巨大的应用潜力。在冰水中淬火后,在883 K下进行了三天热处理的样品中观察到六边形结构。与具有四方结构的合金相比,已观察到六方合金的矫顽场适度降低。但是,具有六边形结构的Mn3-xFexGa合金表现出其他吸引人的磁性能,包括共线和非共线磁性能,在技术应用中具有很高的前景。当在1073 K的温度下退火三天,然后在冰水中淬火时,观察到面心立方(f.c.c.)结构。与四边形和六边形结构相反,所有f.c.c.合金表现出反铁磁行为。这种多用途的材料由于其可调节的晶体结构而可以显示出广泛的多功能性。这项研究将指导这些材料的多种结构的设计,以便在实际应用中利用广泛的功能。

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