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Ultra-Narrow Band Mid-Infrared Perfect Absorber Based on Hybrid Dielectric Metasurface

机译:基于混合介质元表面的超窄带中红外完美吸收器

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摘要

Mid-infrared perfect absorbers (PAs) based on metamaterials have many applications in material analysis and spectral detection thanks to the associated strong light–matter interaction. Most of the PAs are built as ‘metal nanostructure’-insulator-metals (MIM). In this paper, we propose an ultra-narrow band absorber based on dielectric metasurface with a metal film substrate. The absorptance comes from the plasmonic absorption in the metal film, where the absorption is enhanced (while the band of that is compressed) by the super cavity effect of the dielectric metasurface. Based on our numerical calculation, the full-width at half-maximum (FWHM) can reach 67 nm at 8 μm (8‰), which is more than two orders of magnitude smaller than the resonance wavelength and much narrower than the theoretical FWHMs of MIM absorbers. Moreover, we studied their application in infrared thermal imaging, which also has more benefits than MIM absorbers. This kind of hybrid dielectric metasurface provides a new route to achieve ultra-narrow band perfect absorbers in the mid-infrared regime and can be broadly applied in detectors, thermal emitters and bio-spectroscopy.
机译:基于超材料的中红外完美吸收器(PAS)在材料分析和光谱检测中具有许多应用,因此由于相关的强光相互作用。大多数PA都是作为“金属纳米结构的绝缘体 - 金属(MIM)”。在本文中,我们提出了一种基于金属膜基板的电介质元表面的超窄带吸收器。吸收率来自金属膜中的等离子体吸收,其中通过电介质元表面的超级腔效应增强了吸收(而被压缩的带子)。基于我们的数值计算,半最大(FWHM)的全宽度可达67nm,在8μm(8°),比谐振波长小,比谐振波长小,而不是比理论为-ystex的fwhms更窄的数量级MIM吸收剂。此外,我们研究了它们在红外线热成像中的应用,这也比MIM吸收剂更多的益处。这种混合电介质元表面提供了一种新的途径来实现中红外方案中的超窄带完美吸收器,并且可以广泛地应用于探测器,热发射器和生物光谱。

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