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首页> 外文期刊>Journal of Physics. Condensed Matter >Magnetic second-harmonic generation from the terraces and steps of aligned magnetic nanostructures grown on low symmetry interfaces
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Magnetic second-harmonic generation from the terraces and steps of aligned magnetic nanostructures grown on low symmetry interfaces

机译:低阶界面上生长的台阶和取向磁性纳米结构台阶的磁性二次谐波生成

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摘要

Aligned magnetic nanostructures grown on low symmetry interfaces are generally inhomogeneous, with different magnetic species, such as terrace and stEP 2atoms, contributing to the overall magnetic response from the interfacial regions. It is shown that the presence of different magnetic regions can be detected by means of normal incidence (NI) magnetic second-harmonic generation (MSHG). A phenomenological model of NI MSHG at magnetic interfaces of 1m symmetry is developed and a methodology is described for optimizing the signal-to-noise ratio of extracted hysteresis curves by adjusting the input polarization angle. Quadratic terms in the magnetization are properly accounted for, using recently published formulae. It is shown that, where more than one magnetic region is present, the shape of the extracted hysteresis curve, which contains contributions from the different magnetic regions, varies with the input polarization angle. The new approach is used to determine hysteresis loops from the various magnetic regions of Au-capped ultrathin Fe films grown on a vicinal W(110) substrate. The results for 0.75 ML Fe coverage are of particular interest, revealing distinct contributions from terrace and stEP 2Fe atoms. This experimental procedure and phenomenology opens up low symmetry magnetic interfaces and aligned nanostructures to characterization by means of MSHG.
机译:在低对称性界面上生长的对准的磁性纳米结构通常是不均匀的,具有不同的磁性物种,例如阶跃和stEP 2原子,有助于界面区域的整体磁性响应。结果表明,可以通过法向入射(NI)二次谐波产生(MSHG)来检测不同磁性区域的存在。建立了对称于1m磁性界面的NI MSHG的现象学模型,并描述了一种通过调整输入极化角来优化所提取的磁滞曲线的信噪比的方法。使用最近发布的公式,可以适当地解释磁化强度中的二次项。结果表明,在存在一个以上磁性区域的情况下,所提取的磁滞曲线的形状随输入极化角的变化而变化,该磁滞曲线包含来自不同磁性区域的贡献。该新方法用于确定在邻近W(110)衬底上生长的Au封端的超薄Fe膜的各个磁性区域的磁滞回线。 0.75 ML Fe覆盖率的结果特别引人关注,揭示了平台和stEP 2Fe原子的不同贡献。该实验程序和现象学打开了低对称性磁性界面和对齐的纳米结构,以借助MSHG进行表征。

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