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Magnetic patterning through graphene protection against oxidation and interlayer diffusion

机译:通过石墨烯保护抗氧化和层间扩散的磁性图案化

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摘要

Graphene (Gr) has been demonstrated to protect metallic thin films against oxidation. Based on this idea, we propose a new method to fabricate microstructured magnetic domains using patterned single-layer Gr. In the first experiment, single-layer Gr was transferred onto a CoPd alloy film pregrown on a SiO2/Si(001) substrate. Subsequently, the single-layer Gr was patterned through electron beam lithography followed by oxygen plasma etching to expose selective micron-sized areas of CoPd. The exposed areas of CoPd were more easily oxidized compared to the areas protected by Gr, which is found to result in significant magnetic contrast between the protected and surface-oxidized areas of CoPd. In the second experiment, a lithographically-patterned Gr layer was placed between the Fe and CoPd layers to block interlayer diffusion area-selectively during sample annealing. Magnetic contrast is observed to be established between the Pd/Fe/Gr/CoPd and Pd/Fe/CoPd areas, leading to a magnetic structure that matches the pattern of the lithographed Gr. These observations demonstrate that Gr patterning is a simple and powerful method for magnetic patterning, which can be applied in the fabrication of future data-storage and spintronic devices.
机译:已经证明了石墨烯(GR)以保护金属薄膜免受氧化。基于这种思想,我们提出了一种使用图案化单层GR制造微结构化磁畴的新方法。在第一个实验中,将单层GR转移到SiO 2 / Si(001)衬底上的PREDLED上的COPD合金膜上。随后,通过电子束光刻图案化单层GR,然后通过氧等离子体蚀刻蚀刻以暴露选择性微米尺寸的COPD区域。与受GR保护的区域相比,更容易氧化COPD的暴露区域,这被发现导致受保护和表面氧化区域之间的显着磁对比。在第二实验中,将光刻图案化的GR层置于Fe和COPD层之间,以在样品退火期间选择性地阻止层间扩散区域。观察到磁对比度在PD / Fe / GR / COPD和PD / Fe / Copd区域之间建立,导致磁性结构与标志性的GR的图案匹配。这些观察结果表明GR图案化是一种简单而强大的磁性图案化方法,其可以应用于未来的数据存储和旋转式设备的制造中。

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