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The nature of the Fe-graphene interface at the nanometer level

机译:Fe-graphene界面的性质纳米级别的

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摘要

The emerging fields of graphene-based magnetic and spintronic devices require a deep understanding of the interface between graphene and ferromagnetic metals. This paper reports a detailed investigation at the nanometer level of the Fe-graphene interface carried out by angle-resolved photoemission, high-resolution photoemission from core levels, near edge X-ray absorption fine structure, scanning tunnelling microscopy and spin polarized density functional theory calculations. Quasi-free-standing graphene was grown on Pt(111), and the iron film was either deposited atop or intercalated beneath graphene. Calculations and experimental results show that iron strongly modifies the graphene band structure and lifts its pi band spin degeneracy.
机译:石墨烯磁场和的新兴领域自旋电子元件需要深入了解与石墨烯之间的接口铁磁金属。在纳米级别的详细调查Fe-graphene界面进行的angle-resolved光电发射、高分辨率光电发射从核心的水平,接近边缘的x射线吸收精细结构,扫描隧道显微镜和自旋极化密度泛函理论计算。是生长在Pt(111),铁的电影是什么沉积之上或插入石墨烯。表明,铁强烈修改石墨烯其能带结构和电梯π带旋转简并度。

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