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首页> 外文期刊>AIP Advances >Reversal of uniaxial magnetic anisotropy in Fe/GaAs (110) films driven by surface relaxation: An in situ ferromagnetic resonance study
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Reversal of uniaxial magnetic anisotropy in Fe/GaAs (110) films driven by surface relaxation: An in situ ferromagnetic resonance study

机译:用表面松弛驱动的Fe / GaAs(110)膜中的单轴磁各向异性逆转:原位铁磁共振研究

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We report an in situ study of the time evolution of magnetic anisotropy constants of an uncapped 4 nm [~27 monolayers (ML)] Fe film epitaxially grown on a GaAs (110) substrate at room temperature under ultra-high vacuum (UHV) conditions. The structural and chemical properties are monitored by low energy electron diffraction and Auger spectroscopy with a sensitivity of 0.01 ML. The in situ UHV ferromagnetic resonance (FMR) study over a period of 6 days in 10 ?9 Pa reveals that there is a slow magneto-morphological transition of the Fe film surface at room temperature. The resonance field measured in situ in the [ 1 1 ? 0 ] direction initially changes at a rate of 0.3 mT/h within 30 h after deposition and later at 0.1 mT/h over 80 h. We determine the time-dependent changes in the in-plane and out-of-plane anisotropy constants and find a sign change in the uniaxial in-plane anisotropy in the first 24 h due to morphological changes at the surface. The in situ FMR measurements and the Auger analysis allow us to exclude changes in the magnetization and anisotropy due to the contamination and oxidation of the Fe film.
机译:我们在室温下在超高真空(UHV)条件下在室温下在GaAs(110)底物上外延生长的未花纹4nm [〜27单层(ml)] Fe膜的磁各向异性常数的时间演化的原位研究。通过低能量电子衍射和螺旋钻光谱监测结构和化学性质,灵敏度为0.01ml。原位UHV铁磁性共振(FMR)在<10?9 PA的6天内进行研究显示,在室温下Fe膜表面存在缓慢的磁体形态转变。谐振场在[1 1吗? 0]在沉积后在30小时内以0.3mt / h的速率最初改变,后来以0.1mt / h超过80小时。我们确定平面内和面外各向异性常数的时间变化,并且由于表面的形态变化,前24小时在前24小时内发现单轴面内各向异性的符号变化。原位FMR测量和螺旋钻分析允许我们由于Fe膜的污染和氧化而排除磁化和各向异性的变化。

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