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首页> 外文期刊>Plasmonics >Absorption Manipulation in a Narrowband Infrared Absorber Based on the Hybridization of Gap Plasmon and Fabry-Perot Resonance
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Absorption Manipulation in a Narrowband Infrared Absorber Based on the Hybridization of Gap Plasmon and Fabry-Perot Resonance

机译:间隙等离激元和法布里-珀罗共振杂交的窄带红外吸收体中的吸收操纵。

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摘要

We report a narrowband infrared absorber consisting of a metallic grating separated from a metallic substrate by a dielectric layer. In this absorber, the near-perfect absorption results from the hybridization of the gap plasmon mode and the Fabry-Perot resonance mode. The grating layer acts as an efficient absorbing material because of enhanced electric field in the grating slits, and the absorption spectrum can be manipulated by Fabry-Perot resonance. According to this spectrum manipulation mechanism, the resonance wavelength and bandwidth of absorption can be tuned by changing the dielectric layer thickness. Furthermore, the absorption resonance wavelength can be tuned by changing the incidence angle. This absorption manipulation mechanism can be applied in coherent thermal emitters.
机译:我们报道了一种窄带红外吸收剂,该吸收剂由金属光栅与金属基底之间的介电层隔开而成。在该吸收体中,间隙等离子体激元模式和法布里-珀罗共振模式的杂交导致近乎完美的吸收。由于光栅缝隙中电场的增强,光栅层可作为一种有效的吸收材料,并且吸收光谱可以通过法布里-珀罗共振来控制。根据该频谱操纵机制,可以通过改变电介质层的厚度来调节共振波长和吸收带宽。此外,可以通过改变入射角来调整吸收共振波长。这种吸收操纵机制可以应用于相干的热辐射器中。

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