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首页> 外文期刊>Nanotechnology >The effect of Fe-coverage on the structure, morphology and magnetic properties of α-FeSi_2 nanoislands
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The effect of Fe-coverage on the structure, morphology and magnetic properties of α-FeSi_2 nanoislands

机译:Fe覆盖对α-FeSi_2纳米岛结构,形貌和磁性的影响

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Self-assembled α-FeSi_2 nanoislands were formed using solid-phase epitaxy of low (~1.2 ML) and high (~21 ML) Fe coverages onto vicinal Si(111) surfaces followed by thermal annealing. At a resulting low Fe-covered Si(111) surface, we observed in situ, by real-time scanning tunneling microscopy and surface electron diffraction, the entire sequence of Fe-silicide formation and transformation from the initially two-dimensional (2 × 2)-reconstructed layer at 300 °C into (2 × 2)-reconstructed nanoislands decorating the vicinal step-bunch edges in a self-ordered fashion at higher temperatures. In contrast, the silicide nanoislands at a high Fe-covered surface were noticeably larger, more three-dimensional, and randomly distributed all over the surface. Ex situ x-ray photoelectron spectroscopy and high-resolution transmission electron microscopy indicated the formation of an α-FeSi_2 island phase, in an α-FeSi_2{112} ∥ Si{111} orientation. Superconducting quantum interference device magnetometry showed considerable superparamagnetism, with ~1.9 μ_B/Fe atom at 4 K for the low Fe-coverage, indicating stronger ferromagnetic coupling of individual magnetic moments, as compared to high Fe-coverage, where the calculated moments were only ~0.8 μ_B/Fe atom. Such anomalous magnetic behavior, particularly for the low Fe-coverage case, is radically different from the non-magnetic bulk α-FeSi_2 phase, and may open new pathways to high-density magnetic memory storage devices.
机译:使用低(〜1.2 ML)和高(〜21 ML)Fe覆盖在邻近Si(111)表面上的固相外延形成自组装α-FeSi_2纳米岛,然后进行热退火。在由此得到的低铁覆盖率的Si(111)表面上,我们通过实时扫描隧道显微镜和表面电子衍射原位观察到,铁硅化物形成和从初始二维(2×2 )层在300°C的温度下变成(2×2)重构的纳米岛,从而在较高的温度下以自定序的方式装饰相邻的步束边缘。相比之下,高铁覆盖率表面的硅化物纳米岛明显更大,更三维,并且随机分布在整个表面上。异位x射线光电子能谱和高分辨率透射电子显微镜表明,以α-FeSi_2{112}∥Si{111}取向形成了α-FeSi_2岛相。超导量子干涉装置的磁力测定显示出相当大的超顺磁性,对于低铁覆盖率,在4 K时〜1.9μB/ Fe原子,表明单个磁矩的铁磁耦合要强于高铁覆盖率,后者的计算矩仅为〜 0.8μB/ Fe原子。这种异常的磁性行为,特别是对于低铁覆盖率的情况,与非磁性体α-FeSi_2相完全不同,并可能为通向高密度磁性存储器存储设备开辟新途径。

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