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Amplitude Modulation of Anomalously Refracted Terahertz Waves with Gated-Graphene Metasurfaces

机译:用门控石墨烯表面调制异常折射的太赫兹波的幅度调制

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摘要

Although recent progress in metasurfaces has shown great promise for applications, optical properties in metasurfaces are typically fixed by their structural geometry and dimensions. Here, an electrically controllable amplitude of anomalously-refracted waves in a hybrid graphene/metasurface system are experimentally demonstrated, which consists of an artificially constructed two-dimensional metallic apertures array and naturally occurring two-dimensional carbon atoms (graphene) in the subwavelength-scale ( λ/10). Based on Pancharatnam–Berry phase and by careful design of a spatially linear phase profile, it is shown that the amplitude of anomalously refracted circularly cross-polarized terahertz waves can be effectively modulated by an applied gate voltage. The developed electrically tunable graphene metasurfaces may lead to various advanced applications that require dynamical control over electromagnetic waves, such as amplitude tunable active focusing lenses, vortex phase plates and dynamic holography.
机译:尽管Metasurfaces的最新进展表明了适用于应用,但Metasurfaces中的光学属性通常通过其结构几何形状和尺寸来固定。这里,通过实验证明了混合石墨烯/元表面系统中的电气可控幅度的异常折射波,其包括在子波长级的人工构造的二维金属孔阵列和天然存在的二维碳原子(石墨烯)组成(<λ/ 10)。基于PancharAtnam-Berry阶段和通过仔细设计空间线性相位轮廓,示出了通过施加的栅极电压有效地调制了异常折射圆极化太极度波浪的幅度。开发的电调解石墨烯元件可能导致各种先进的应用,需要对电磁波进行动态控制,例如幅度可调有源聚焦镜头,涡流相板和动态全息术。

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