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金属层耦合介质超材料实现的多波段光完美吸收

Multi-band light perfect absorption by a metal layer-coupled dielectric metamaterial.

作者信息

Liu Zhengqi, Liu Guiqiang, Fu Guolan, Liu Xiaoshan, Wang Yan

出版信息

Opt Express. 2016 Mar 7;24(5):5020-5025. doi: 10.1364/OE.24.005020.

Abstract

Multispectral light perfect absorption is desired for many applications. Herein, we propose and demonstrate a novel multi-band light perfect absorber (MLPA) scheme based on a triple-layer dielectric meta-material structure coupled with a metal substrate. Four absorption bands with the maximal absorbance up to 98.9% and the narrow bandwidth down to 2 nm are achieved in the visible range. Optical cavity resonances and the plasmon-like dipolar resonance of the high-index dielectric resonators and their hybridization effects contribute to the observed absorption behaviors. Moreover, the obtained MLPA is with high scalability in the frequency range by tuning the structural parameters. These features pave a new and feasible way for multispectral light absorption and hold applications in the optoelectronic detection, filtering and imaging.

摘要

多光谱光的完美吸收在许多应用中都备受期待。在此,我们提出并展示了一种基于与金属衬底耦合的三层介质超材料结构的新型多波段光完美吸收体(MLPA)方案。在可见光范围内实现了四个吸收带,最大吸收率高达98.9%,带宽窄至2nm。光学腔共振以及高折射率介质谐振器的类等离子体偶极共振及其杂化效应促成了所观察到的吸收行为。此外,通过调整结构参数,所获得的MLPA在频率范围内具有高可扩展性。这些特性为多光谱光吸收开辟了一条新的可行途径,并在光电检测、滤波和成像等方面具有应用前景。

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