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Growth of highly oriented crystalline α-Fe/AlN/Fe3N trilayer structures on Si(1 1 1) substrates by molecular beam epitaxy

机译:通过分子束外延在Si(1 1 1)衬底上生长高取向α-Fe/ AlN / Fe3N晶体三层结构

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摘要

We have realized highly oriented nitride-based α-Fe/AlN/Fe3N ferromagnetic hybrid structures on Si(1 1 1) substrates by molecular beam epitaxy using AlN/SiC intermediate layers. A two-step hysteresis loop, typically observed in magnetic tunneling junctions, was clearly observed in magnetization versus magnetic field measurements. This result indicates the formation of ferromagnetic α-Fe and Fe3N layers separated by 8-nm-thick AlN layers over approximately 1 cm2 area, and also shows the difference in coercive field between the two ferromagnetic layers.
机译:我们已经使用AlN / SiC中间层通过分子束外延在Si(1 1 1)衬底上实现了高度取向的基于氮化物的α-Fe/ AlN / Fe3N铁磁混合结构。在磁化与磁场测量中清楚地观察到通常在磁性隧道结中观察到的两步磁滞回线。该结果表明在约1cm 2的面积上形成了由8nm厚的AlN层隔开的铁磁α-Fe和Fe 3 N层,并且还显示了两个铁磁层之间的矫顽场的差异。

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