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Electric field-controlled rippling of graphene

机译:电场磁场控制石墨烯的荡漾

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摘要

Metal-graphene interfaces generated by electrode deposition induce barriers or potential modulations influencing the electronic transport properties of graphene based devices. However, their impact on the local mechanical properties of graphene is much less studied. Here we show that graphene near a metallic interface can exhibit a set of ripples self-organized into domains whose topographic roughness is controlled by the tip bias of a scanning tunneling microscope. The reconstruction from topographic images of graphene bending energy maps sheds light on the local electro-mechanical response of graphene under STM imaging and unveils the role of the stress induced by the vicinity of the graphene-metal interface in the formation and the manipulation of these ripples. Since microscopic rippling is one of the important factors that limit charge carrier mobility in graphene, the control of rippling with a gate voltage may have important consequences in the conductance of graphene devices where transverse electric fields are created by contactless suspended gate electrodes. This opens up also the possibility to dynamically control the local morphology of graphene nanomembranes.
机译:Metal-graphene接口产生的电极沉积产生或潜在的障碍调节影响的电子传输石墨烯的属性的基础设备。他们对当地的机械性能的影响石墨烯的研究要少得多。石墨烯金属界面附近可以展示一组涟漪自组织域的地形粗糙度控制的提示扫描隧道的偏见显微镜。石墨烯弯曲能量的图像地图了当地的机电响应石墨烯在STM成像和揭示的作用压力诱导的附近在形成和graphene-metal接口操纵这些涟漪。荡漾的重要因素之一石墨烯的载流子迁移率,限制费用控制栅电压的荡漾重要的电导的影响石墨烯设备横向电场的地方是由非接触式悬浮门电极。动态控制的局部形态石墨烯nanomembranes。

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