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Atomic-scale morphology and electronic structure of manganese atomic layers underneath epitaxial graphene on SiC(0001)

机译:SiC(0001)上外延石墨烯下方锰原子层的原子尺度形态和电子结构

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摘要

We report the fabrication of a novel epitaxial graphene(EG)/Mn/SiC(0001) sandwiched structure through the intercalation of as-deposited Mn atoms on graphene surfaces, with the aid of scanning tunneling microscope, low energy electron diffraction, and X-ray photoelectron spectroscopy. We found that Mn can intercalate below both sp ~3-hybridized carbon-rich interface layer and monolayer graphene, along with the formation of various embedded Mn islands showing different surface morphologies. The unique trait of the sandwiched system is that the strong interaction between the carbon-rich interface layer and SiC(0001) can be decoupled to some degrees, and contemporaneous, an n-doping effect is observed by mapping the energy band of the system using angle-resolved photoemission spectroscopy. Moreover, what deserves our special attention is that the intercalated islands can only evolve below monolayer graphene when a bilayer coexists, accounting for an intriguing graphene thickness-dependent intercalation effect. In the long run, we believe that the construction of graphene/Mn/SiC(0001) systems offers ideal candidates for exploring some intriguing physical properties such as the magnetic property of two-dimensional transition metal systems.
机译:我们报告了通过在扫描隧道显微镜,低能电子衍射和X-射线的帮助下通过在石墨烯表面上沉积的Mn原子的嵌入来制造新型外延石墨烯(EG)/ Mn / SiC(0001)夹心结构的过程。射线光电子能谱。我们发现,Mn可以插入sp〜3杂化的富碳界面层和单层石墨烯的下方,并形成各种嵌入的Mn岛,这些岛表现出不同的表面形态。夹层系统的独特之处在于,富碳界面层与SiC(0001)之间的强相互作用可以解耦至一定程度,同时,通过绘制系统的能带,可以观察到n掺杂效应。角分辨光发射光谱。此外,值得我们特别注意的是,当双层共存时,插层的岛只能在单层石墨烯下方演化,这说明了有趣的石墨烯厚度依赖性插层效应。从长远来看,我们认为石墨烯/ Mn / SiC(0001)系统的构建为探索一些有趣的物理特性(例如二维过渡金属系统的磁性)提供了理想的候选者。

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