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首页> 外文期刊>Journal of Lightwave Technology >Tunable Ultra-Multispectral Metamaterial Perfect Absorbers Based on Out-of-Plane Metal-Insulator-Graphene Heterostructures
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Tunable Ultra-Multispectral Metamaterial Perfect Absorbers Based on Out-of-Plane Metal-Insulator-Graphene Heterostructures

机译:基于外平面金属绝缘体 - 石墨烯异质结构的可调谐超多光谱超材料完美吸收剂

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摘要

The out-of-plane metal-insulator-graphene (MIG) heterostructure separated from metal substrates by a silica spacer has been intensively investigated. Both numerical simulations and theoretical calculations exhibit that due to the dominating effect of adjacent metal layers, multiple strongly confined Fabry-Perot (F-P) resonances are simultaneously excited on the ingenious out-of-plane MIG heterostructure; and thus, are conductive to the realization of a nine-band plasmonic perfect absorber at mid-infrared wavelengths. The spectral positions of absorption peaks are handily tuned by changing the structural parameters of MIG heterostructures and the electrically controlled chemical potential of graphene. More interestingly, the good absorption stability at varying incident angles is observed. Numerical simulations are in excellent agreement with theoretical results. Such tunable angle-independent nine-band perfect absorber undoubtedly finds utility in mid-infrared optical filters and modulators. The proposed out-of-plane MIG heterostructure allows possibilities for multispectral enhancement of light-graphene interactions.
机译:密集地研究了由二氧化硅间隔物与金属基材分离的外平面金属绝缘体 - 石墨烯(MIG)异质结构。数值模拟和理论计算表现出,由于相邻金属层的主导效果,多个强大的法布里 - 珀罗(F-P)共振在巧妙的外平面MIG异质结构上同时发生;因此,导向在中红外波长处实现九个带等离子体完美吸收器。通过改变MIG异质结构的结构参数和石墨烯的电控化学电位,可以通过轻松调谐吸收峰的光谱位置。更有趣的是,观察到不同入射角处的良好吸收稳定性。数值模拟与理论结果非常吻合。这种可调角度无关的九带完美吸收器无疑在中红外光学滤波器和调制器中找到了效用。所提出的外平面MIG异质结构允许多光谱增强光 - 石墨烯相互作用的可能性。

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