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首页> 外文期刊>Materials express: an international journal on multidisciplinary materials research >The finite size effect on the transport and magnetic properties of epitaxial Fe3O4 thin films
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The finite size effect on the transport and magnetic properties of epitaxial Fe3O4 thin films

机译:关于外延Fe3O4薄膜的运输和磁性特性的有限尺寸影响

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摘要

Magnetite (Fe3O4) has great potential for use in the new field of spintronics due to its interesting physical properties, e.g., half-metallic ferromagnetic nature and metal-insulator transition (Verwey transition). Therefore, a basic understanding of these properties is essential for applications in spintronics devices, especially as the film thickness is reduced. In this work, the transport and magnetic properties of stoichiometric ultrathin epitaxial Fe3O4 films have been investigated. The Fe3O4 films were grown on MgO (001) substrates using molecular beam epitaxy under optimal growth conditions. Low energy electron diffraction and X-ray photoemission spectroscopy confirmed that the films are single phase Fe3O4 . The Verwey transition has been investigated using both transport and magnetization measurements. The magnetization measurements show a sharp Verwey transition in all of these films, which indicates that the films have properties comparable to the bulk. Furthermore, the magnetization measurements at room temperature show that the ultrathin films with thickness t 20 nm are ferromagnetic with magnetization values greater than those for bulk magnetite. Such enhanced magnetization in ultrathin Fe3O4 films is very promising for spin injection and other applications.
机译:由于其有趣的物理性质,例如,半金属铁磁性质和金属绝缘体过渡(Verwey Transition),磁铁矿(Fe3O4)具有很大的潜力。因此,对这些属性的基本理解对于闪光装置中的应用是必不可少的,特别是因为膜厚度减小。在这项工作中,研究了化学计量超薄外延Fe3O4薄膜的运输和磁性。在最佳生长条件下使用分子束外延在MgO(001)底物上生长Fe3O4薄膜。低能量电子衍射和X射线照相体光谱证实薄膜是单相Fe3O4。使用传输和磁化测量来研究Verwey转换。磁化测量显示在所有这些膜中的尖锐verwey过渡,这表明薄膜具有与散装相当的性质。此外,室温下的磁化测量表明,具有厚度T&LT的超薄膜; 20nm是磁化值大于散装磁铁矿的铁磁。超薄Fe3O4薄膜中这种增强的磁化非常有希望用于旋转注射和其他应用。

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