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Highly reflective subtractive color filters capitalizing on arnsilicon metasurface integrated with nanostructured aluminumrnmirrors

机译:利用与纳米结构的铝镜集成的硅超颖表面,利用高反射性减色滤色镜

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摘要

Metasurface-based color filters have been recently applied for the creation of imaging devices and color printing in a subwavelength scale. In this work, a highly reflective subtractive color filter featuring an excellent color contrast is conceived and demonstrated, by exploiting a crystalline-silicon nanopillar (NP)-based dielectric metasurface integrated with an aluminum disk mirror (DM) and holey mirror (HM) at the top and bottom, respectively. A deep suppression in reflection is acquired through a magnetic dipole (MD) resonance that is supported by the constituent NP, and can be effectively tailored via the control of the NP diameter. The cooperation of the nanostructured DM and HM plays a dual role of dramatically boosting the efficiency and reinforcing the confinement of the MD in the NP, which is primarily accountable for the reduction in the spectral bandwidth. For the manufactured filters, both a high reflection efficiency reaching approximate to 70% and relatively small bandwidth of approximate to 55 nm are attained, thus leading to a broad palette of vivid and bright colors. The proposed devices are supposed to exhibit a polarization-insensitive operation and a relaxed angular tolerance, thereby facilitating the implementation of miniaturized display/imaging devices with a high resolution and excellent color fidelity.
机译:基于超表面的滤色器最近已被用于成像设备的创建和亚波长范围的彩色打印。在这项工作中,通过利用集成有铝盘反射镜(DM)和多孔镜(HM)的基于晶体硅纳米柱(NP)的介电超表面,构想并展示了具有出色色彩对比度的高反射减色滤色镜。顶部和底部。通过由组分NP支持的磁偶极(MD)共振,可以实现对反射的深度抑制,并且可以通过控制NP直径有效地调整反射。纳米结构DM和HM的合作起着双重作用,即显着提高效率并加强NP中NP的限制,这主要是由于频谱带宽的减少。对于制造的滤光片,既可以达到约70%的高反射效率,又可以达到约55 nm的相对较小的带宽,从而获得了鲜艳和明亮色彩的宽泛调色板。所提出的设备应该表现出对偏振不敏感的操作和宽松的角度公差,从而有利于实现具有高分辨率和优异的色彩保真度的小型化显示/成像设备。

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