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Monolayer-graphene-based broadband and wide-angle perfect absorption structures in the near infrared

机译:基于单层石墨烯的宽带和广角近红外完美吸收结构

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摘要

Broadband optical absorption structures in the near infrared by coupling monolayer-graphene with periodical metal structures are proposed and demonstrated numerically. Optical absorption of graphene with over-50%-absorption bandwidth up to hundreds of nanometer caused by magnetic dipole resonances and magnetic coupling effect are investigated in detail, and the demonstrated bandwidths are one order higher than those caused by dielectric guiding mode resonances. In addition, the influences of geometrical parameters of structures are fully analyzed and these demonstrated structures show angular-insensitive absorption for oblique incidence in a large angular range. The demonstrated absorption structures in this work provide new design ideas in the realization of advanced graphene-based optoelectronic devices.
机译:提出并结合单层石墨烯与周期性金属结构的近红外宽带光吸收结构并进行了数值模拟。详细研究了由磁偶极子共振和磁耦合效应引起的具有超过50%的吸收带宽,高达数百纳米的石墨烯的光吸收和磁耦合效应,并且所证明的带宽比介电导模共振引起的带宽高一个数量级。此外,对结构几何参数的影响进行了全面分析,这些证明的结构在大角度范围内对倾斜入射显示出对角不敏感的吸收。这项工作中展示的吸收结构为实现先进的基于石墨烯的光电器件提供了新的设计思路。

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