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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Magnetization studies of first-order magnetostructural phase transition in polycrystalline FeRh thin films
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Magnetization studies of first-order magnetostructural phase transition in polycrystalline FeRh thin films

机译:多晶FeRh薄膜中一阶磁结构相变的磁化研究

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The nucleation and growth of the transformed phase in the matrix of the original phase played an important role in the progress of magnetic transition. In spite of extensive investigations in B2 ordered FeRh alloy systems, until now few studies have been conducted for clarifying the nucleation and growth mechanism of the antiferromagnetic-ferromagnetic phase transition in FeRh alloys. In this work, B2 ordered polycrystalline FeRh thin films were fabricated on glass substrates by a sputtering technique and subsequent heat treatment. The as-deposited film shows a nonmagnetic property because of its face centred cubic structure. After annealing, the polycrystalline FeRh thin films show a clear first-order magnetostructural phase transition. The FeRh thin film shows an overall activation energy of about 228.6kJmol ~1 for the entire first-order magnetostructural phase transition process. Results suggest that the first-order magnetostructural phase transition in ordered FeRh thin films follows the Johnson-Mehl-Avrami model with characteristic exponent n in the range 1-4, indicating that the phase transition process is a multi-step process characterized by different nucleation and growth mechanisms of the new ferromagnetic phase. The results obtained in this study will shed light on the underlying physics of the first-order magnetostructural phase transition of ordered FeRh alloys. The applicability of the concepts used in this study to the FeRh system shows universality and can be applied to other material systems where there is a first-order magnetostructural phase transition such as in manganites.
机译:原始相基质中相变相的形核和生长在磁跃迁的过程中起着重要作用。尽管在B2有序FeRh合金体系中进行了广泛的研究,但到目前为止,很少有研究来阐明FeRh合金中反铁磁-铁磁相变的形核和生长机理。在这项工作中,通过溅射技术和随后的热处理在玻璃基板上制备了B2有序多晶FeRh薄膜。所沉积的膜由于其面心立方结构而表现出非磁性。退火后,多晶FeRh薄膜显示出清晰的一阶磁结构相变。对于整个一阶磁结构相变过程,FeRh薄膜显示出约228.6kJmol〜1的总活化能。结果表明,有序FeRh薄膜的一阶磁结构相变遵循Johnson-Mehl-Avrami模型,特征指数n在1-4范围内,表明相变过程是一个多步过程,其特征是成核不同和新铁磁相的生长机理。在这项研究中获得的结果将阐明有序FeRh合金的一阶磁结构相变的基本物理学。本研究中使用的概念在FeRh系统中的适用性显示出普遍性,并且可以应用于存在一阶磁结构相变的其他材料系统,例如锰矿中。

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