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Fabrication and characterization of high aspect ratio perpendicular patterned information storage media in an Al2O3/GaAs substrate

机译:Al2O3 / GaAs衬底中高纵横比垂直图案化信息存储介质的制备与表征

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摘要

In a new approach, we have fabricated 6:1 aspect ratio magnetic nanocolumns, 60–250 nm in diameter, embedded in a hard aluminum-oxide/gallium-arsenide (Al2O3/GaAs) substrate. The fabrication technique uses the highly selective etching properties of GaAs and AlAs, and highly efficient masking properties of Al2O3 to create small diameter, high aspect ratio holes. Nickel (Ni) is subsequently electroplated into the holes, followed by polishing, which creates a smooth and hard surface appropriate for future reading and writing of the columns as individual bits for high density information storage. We have used magnetic force microscopy and scanning magneto-resistance microscopy to characterize the resulting magnets. We find the columns more magnetically stable than previously achieved with magnets embedded in a SiO2 substrate. Such stability is necessary before further writing of perpendicular patterned media can be demonstrated.
机译:在一种新方法中,我们制造了直径为60:250 nm的长径比为6:1的磁性纳米柱,并嵌入到硬质氧化铝​​/砷化镓(Al2O3 / GaAs)衬底中。该制造技术利用GaAs和AlAs的高度选择性蚀刻特性以及Al2O3的高效掩膜特性来创建小直径,高纵横比的孔。随后将镍(Ni)电镀到孔中,然后进行抛光,这将创建一个光滑而坚硬的表面,适合将来作为高密度信息存储的单个位来读取和写入列。我们已经使用磁力显微镜和扫描磁阻显微镜来表征所得的磁体。我们发现这些柱子比以前用嵌入SiO2衬底中的磁体获得的磁稳定性更高。这样的稳定​​性在证明垂直图案化介质的进一步写入之前是必需的。

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