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Infrared plasmonic filters integrated with an optical and terahertz multi-spectral material

机译:集成了光学和太赫兹多光谱材料的红外等离子体滤波器

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摘要

Infrared plasmonic filters, consisting of subwavelength hole arrays etched into metal films, exhibit characteristics that are typically associated with the formation of surface plasmon polaritons, namely enhanced transmission and wavelength filtering of the incident light. In this article, the properties that dictate the plasmonic response of a material from the optical to the infrared regime are investigated, followed by the design, simulation, fabrication and characterisation of an infrared plasmonic filter set. Infrared plasmonic filters have also been integrated with optical plasmonic filters and a terahertz metamaterial to create a new hybrid multi-spectral material that can filter blue, green, red, near infrared, short wave infrared and two mid infrared wavelengths whilst simultaneously absorbing a single terahertz frequency. The multi-spectral material could be integrated with appropriate image sensors to create a multi-spectral camera capable of operating at optical, infrared and terahertz wavebands simultaneously.
机译:由蚀刻到金属膜中的亚波长孔阵列组成的红外等离子滤光片具有通常与表面等离振子极化子形成相关的特性,即增强的透射率和入射光的波长过滤。在本文中,研究了决定材料从光学到红外的等离子体响应的特性,然后进行了红外等离子体滤波器组的设计,仿真,制造和表征。红外等离子滤光片还与光学等离子滤光片和太赫兹超材料集成在一起,以创建一种新型的混合多光谱材料,该材料可以过滤蓝,绿,红,近红外,短波红外和两个中红外波长,同时吸收单个太赫兹频率。可以将多光谱材料与适当的图像传感器集成在一起,以创建能够同时在光学,红外和太赫兹波段工作的多光谱相机。

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