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Soft X-ray resonant Kerr rotation measurement and simulation of element-resolved and interface-sensitive magnetization reversals in aNiFe/FeMn/Co trilayer structure

机译:软X射线共振Kerr旋转测量和元素分辨和界面敏感磁化反转的模拟。NiFe / FeMn / Co三层结构

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摘要

We report experimental observations of element- and buried interface-resolved magnetization reversals in an oppositely exchange-biased NiFeFeMnCo trilayer structure by soft x-ray resonant Kerr rotation measurements. Not only Co-, Ni-, Fe-specific exchange-biased loops but also interfacial uncompensated (UC) Fe reversal loops coupled to the individual Co and NiFe layers are separately observed. From the experimental results interpreted with the help of the model simulations of soft x-ray resonant Kerr rotation, the effective thicknesses of interfacial UC regions at the buried interfaces of both FeMnCo and NiFeFeMn are found to be tUC =13±2 A and 6±4 A, respectively. The depth sensitivity as well as element specificity of the x-ray resonant Kerr effect offer an elegant way into the investigations of element- and depth-resolved magnetization reversals of ferromagnetic ultrathin regions at buried interfaces in multicomponent multilayer films.
机译:我们通过软X射线共振Kerr旋转测量报告了在相反交换偏置的NiFeFeMnCo三层结构中元素和掩埋界面分辨的磁化反转的实验观察。不仅可以分别观察到Co,Ni,Fe特定的交换偏置环,而且还可以观察到耦合到各个Co和NiFe层的界面未补偿(UC)Fe反转环。根据借助软X射线共振Kerr旋转的模型仿真解释的实验结果,发现FeMnCo和NiFeFeMn的埋入界面处的界面UC区的有效厚度为tUC = 13±2 A和6±分别为4A。 X射线共振Kerr效应的深度敏感性以及元素特异性为研究多组分多层膜掩埋界面处铁磁超薄区域的元素分辨和深度分辨的磁化反转提供了一种绝妙的方法。

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