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Growth and magnetic properties of ultrathin Fe films on Pt(111)

机译:Pt(111)上超薄铁膜的生长和磁性

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摘要

Auger electron spectroscopy (AES), low-energy electron diffraction (LEED), and surface magneto-optical Kerr effect (SMOKE) were used to investigate the growth mode, alloy formation, and magnetic properties of ultrathin Fe films deposited on Pt(111) surface. The growth mode of Fe films on Pt(111) at RT is at least 3 ML layer-by-layer growth before three-dimensional island growth begins. When the thickness of Fe films was 1 ML, no Kerr signal is observed at room temperature. Both the polar and longitudinal Kerr signals can be detected when the thickness of Fe films (d_(Fe)) is 1.5 ML. When the thickness of Fe films is higher than 1.5 ML, only the longitudinal Kerr signal can be observed. The easy axis of the magnetization is in the in-plane direction when d_(Te) > 1.5 ML. After the formation of Fe-Pt surface alloy for 5 ML Fe ultrathin films on a flat Pt(111) surface, the Kerr signal and the coercivity enhance to 150% and 1100%, respectively. The formation of Fe-Pt surface alloy was confirmed by AES. The evolutions of the magnetic properties are strongly relative to the diffusion process of Fe thin films into Pt substrate.
机译:利用俄歇电子能谱(AES),低能电子衍射(LEED)和表面磁光克尔效应(SMOKE)研究了沉积在Pt(111)上的超薄铁膜的生长模式,合金形成和磁性能。表面。在三维岛生长开始之前,Pt(111)上的Fe膜在RT上的生长模式至少是逐层生长3 ML。当Fe膜的厚度为1ML时,在室温下未观察到克尔信号。当Fe膜的厚度(d_(Fe))为1.5 ML时,可以同时检测到极性和纵向Kerr信号。当Fe膜的厚度大于1.5 ML时,只能观察到纵向Kerr信号。当d_(Te)> 1.5 ML时,易磁化轴为面内方向。在平坦的Pt(111)表面上形成用于5 ML Fe超薄膜的Fe-Pt表面合金后,克尔信号和矫顽力分别提高到150%和1100%。通过AES确认了Fe-Pt表面合金的形成。磁性的变化与Fe薄膜向Pt衬底的扩散过程密切相关。

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