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Graphene transistor optical detector based on metamaterial structure and application thereof

机译:基于超材料结构的石墨烯晶体管光学探测器及其应用

摘要

A graphene transistor optical detector based on a metamaterial structure and an application thereof. The optical detector includes a substrate, a gate metal layer, a gate medium layer, a graphene layer, a source and drain metal layer successively arranged from bottom to top, wherein a local region of at least the source and drain metal layer has a periodic micro/nanostructure, the periodic micro/nanostructure being matched with the gate metal layer and the gate medium layer to form a metamaterial structure having a complete absorption characteristic. By changing the refractive index, thickness or the like of material for the periodic micro/nanostructure and the gate medium layer, a light absorption frequency band of the metamaterial structure can be regulated. The optical detector provided by the present invention has higher flexibility and narrow-band response, and can work under visible light to infrared even longer wavebands by selecting different metamaterial structures.
机译:基于超材料结构的石墨烯晶体管光学检测器及其应用。该光学检测器包括从底部到顶部连续布置的基板,栅极金属层,栅极介质层,石墨烯层,源极和漏极金属层,其中至少源极和漏极金属层的局部区域具有周期性。微米/纳米结构,周期性的微米/纳米结构与栅极金属层和栅极介质层匹配,以形成具有完全吸收特性的超材料结构。通过改变用于周期性微/纳米结构和栅极介质层的材料的折射率,厚度等,可以调节超材料结构的光吸收频带。本发明提供的光学检测器具有更高的柔性和窄带响应,并且通过选择不同的超材料结构可以在可见光到红外甚至更长的波段下工作。

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