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Hybridization of optical plasmonics with terahertz metamaterials to create multi-spectral filters

机译:光学等离子体与太赫兹超材料的杂交以产生多光谱滤光片

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摘要

Multi-spectral imaging systems typically require the cumbersome integration of disparate filtering materials in order to work simultaneously in multiple spectral regions. We show for the first time how a single nano-patterned metal film can be used to filter multi-spectral content from the visible, near infrared and terahertz bands by hybridizing plasmonics and metamaterials. Plasmonic structures are well-suited to the visible band owing to the resonant dielectric properties of metals, whereas metamaterials are preferable at terahertz frequencies where metal conductivity is high. We present the simulated and experimental characteristics of our new hybrid synthetic multi-spectral material filters and demonstrate the independence of the metamaterial and plasmonic responses with respect to each other.
机译:为了在多个光谱区域中同时工作,多光谱成像系统通常需要不同过滤材料的繁琐集成。我们首次展示了如何通过混合等离子与超材料,将单个纳米图案化金属膜用于从可见,近红外和太赫兹波段中过滤多光谱内容。由于金属的共振介电特性,等离激元结构非常适合可见光波段,而金属材料电导率较高的太赫兹频率则优选超材料。我们介绍了我们的新型混合合成多光谱材料滤镜的模拟和实验特性,并展示了超材料和等离子体响应之间的独立性。

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