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Graphene metasurfaces engineered with organic molecules

机译:用有机分子设计的石墨烯超表面

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Layered graphene metasurfaces functionalized with graded pattern of organic molecules will be investigated to manipulate optical beams with great flexibility. The optical property of graphene is modified by molecules through charge transfer and band shape modification. By patterning one or two types of organic molecules on the graphene surface (digital metasurface), desired plasmonic response will be tailored leading to novel applications for surface wave engineering or reflection/transmission/absorption manipulation. The former is enabled due to the gradient effective index profile for surface wave by weighting two types of molecules. The latter is realized through resonance control of the unit cell, where the metasurface is acting as an atom-thick impedance sheet with values locally tunable by the configuration of molecular patterns.
机译:将研究用有机分子的渐变图案功能化的层状石墨烯超表面,以极大地控制光束。石墨烯的光学性质通过分子通过电荷转移和能带形状修饰而改变。通过在石墨烯表面(数字超表面)上构图一种或两种类型的有机分子,可以定制所需的等离子体响应,从而为表面波工程或反射/透射/吸收操纵提供了新颖的应用。前者是由于对两种类型的分子加权而获得的表面波梯度有效折射率分布而启用的。后者是通过晶胞的共振控制来实现的,其中,超颖表面起着原子厚的阻抗片的作用,其阻抗值可通过分子图案的配置进行局部调节。

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