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Tailoring magnetic anisotropy by graphene-induced selective skyhook effect on 4f-metals

机译:裁剪graphene-induced磁各向异性对4 f-metals选择性skyhook的影响

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摘要

From macroscopic heavy-duty permanent magnets to nanodevices, the precise control of the magnetic properties in rare-earth metals is crucial for many applications used in our daily life. Therefore, a detailed understanding and manipulation of the 4f-metals’ magnetic properties are key to further boosting the functionalization and efficiency of future applications. We present a proof-of-concept approach consisting of a dysprosium-iridium surface alloy in which graphene adsorption allows us to tailor its magnetic properties. By adsorbing graphene onto a long-range ordered two-dimensional dysprosium-iridium surface alloy, the magnetic 4f-metal atoms are selectively lifted from the surface alloy. This selective skyhook effect introduces a giant magnetic anisotropy in dysprosium atoms as a result of manipulating its geometrical structure within the surface alloy. Introducing and proving this concept by our combined theoretical and experimental approach provides an easy and unambiguous understanding of its underlying mechanism. Our study sets the ground for an alternative path on how to modify the crystal field around 4f-atoms and therefore their magnetic anisotropies.
机译:从宏观重型永久磁铁nanodevices,磁场的精确控制属性在稀土金属是至关重要的许多应用程序用于我们的日常生活中。因此,一个详细的了解,操作4 f-metals的磁性属性是进一步提高的关键未来的功能化和效率应用程序。方法dysprosium-iridium组成的石墨烯吸附允许的表面合金我们调整其磁性。吸附石墨烯到远程命令二维dysprosium-iridium表面合金,磁4 f-metal原子选择性从表面合金。skyhook效应引入了一个巨大的磁场各向异性原子由于镝在操纵其几何结构表面合金。结合理论和概念实验方法提供了一种简便的和明确其基本的理解机制。如何修改水晶可供选择的路径场4 f-atoms因此他们磁各向异性。

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