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Resonant magnetic reflectivity in the extreme ultraviolet spectral range: Interlayer-coupled Co/Si/Ni/Fe multilayer system

机译:极紫外光谱范围内的共振磁反射率:层间耦合的Co / Si / Ni / Fe多层系统

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摘要

A polycrystalline test structure comprising a 5 nmcobalt and a 10 nm nickel/ iron layer separated by a silicon layer ranging from 1.5 to 4 nm prepared by thermal evaporation has been investigated by resonant magnetic reflectivity measurements of horizontally polarized light in the extreme ultraviolet spectral range. By exploiting the transversal magneto-optical Kerr effect at the M absorption edges of cobalt and nickel (59.5 eV and 66.5 eV) a magnetic contrast as large as 80% for cobalt and 25% for nickel can be obtained near a Brewster angle of about 45. Angle- and energy-dependent scans of the magnetic asymmetry as well as element-selective, magneto-optical loops of the hysteresis were recorded against the thickness of the interlayer, reflecting the switching behavior of the individual ferromagnetic layers as a function of the interlayer coupling.
机译:通过在极紫外光谱范围内对水平偏振光进行共振磁反射率测量,研究了一种多晶测试结构,该结构包含5 nm的钴和10 nm的镍/铁层,该层由热蒸发制得的1.5至4 nm的硅层隔开。通过在钴和镍的M吸收边缘(59.5 eV和66.5 eV)处利用横向磁光Kerr效应,可以在大约45的布儒斯特角附近获得钴的磁对比度和镍的25%的磁对比度。根据中间层的厚度记录磁不对称性的角度和能量相关扫描以及磁滞回线的元素选择磁光回路,反映了各个铁磁层的开关行为与中间层的关系耦合。

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