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Superconducting graphene sheets in CaC6 enabled by phonon-mediated interband interactions

机译:CaC6中的超导石墨烯片通过声子介导的带间相互作用实现

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摘要

There is a great deal of fundamental and practical interest in the possibility of inducing superconductivity in a monolayer of graphene. But while bulk graphite can be made to superconduct when certain metal atoms are intercalated between its graphene sheets, the same has not been achieved in a single layer. Moreover, there is a considerable debate about the precise mechanism of superconductivity in intercalated graphite. Here we report angle-resolved photoelectron spectroscopy measurements of the superconducting graphite intercalation compound CaC6 that distinctly resolve both its intercalant-derived interlayer band and its graphene-derived π* band. Our results indicate the opening of a superconducting gap in the π* band and reveal a substantial contribution to the total electron–phonon-coupling strength from the π*-interlayer interband interaction. Combined with theoretical predictions, these results provide a complete account for the superconducting mechanism in graphite intercalation compounds and lend support to the idea of realizing superconducting graphene by creating an adatom superlattice.
机译:在石墨烯单层中诱导超导的可能性引起了许多基本的和实际的兴趣。但是,当某些金属原子插入其石墨烯片之间时,虽然可以使块状石墨超导,但在单层中却无法实现。此外,关于插层石墨中超导性的精确机理还有很多争论。在这里,我们报告了超导石墨插层化合物CaC6的角度分辨光电子能谱测量结果,该化合物可明显分辨其插层衍生的层间带和石墨烯衍生的π*带。我们的结果表明在π*带中打开了一个超导间隙,并揭示了π*-层间带间相互作用对总的电子-声子耦合强度的重要贡献。结合理论预测,这些结果为石墨嵌入化合物中的超导机理提供了完整的解释,并为通过创建吸附原子超晶格实现超导石墨烯的想法提供了支持。

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