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基于利用富硅氮化硅纳米盘的全介质超表面的结构色滤光片。

Structural color filters based on an all-dielectric metasurface exploiting silicon-rich silicon nitride nanodisks.

作者信息

Park Chul-Soon, Koirala Ishwor, Gao Song, Shrestha Vivek Raj, Lee Sang-Shin, Choi Duk-Yong

出版信息

Opt Express. 2019 Jan 21;27(2):667-679. doi: 10.1364/OE.27.000667.

Abstract

An all-dielectric metasurface is deemed to serve a potential platform to demonstrate spectral filters. Silicon-rich silicon nitride (SRN), which contains a relatively large portion of silicon, can exhibit higher refractive indices, when compared to silicon nitride. Meanwhile, the extinction coefficient of SRN is smaller than that of hydrogenated amorphous silicon, leading to reduced absorption loss in the shorter wavelength. SRN is therefore recommended as a scattering element from the perspective of realizing all-dielectric metasurfaces. In this work, we propose and embody a suite of highly efficient structural color filters, capitalizing on a dielectric metasurface that consists of a two-dimensional array of SRN nanodisks that are embedded in a polymeric layer. The SRN nanodisks may support the electric dipole (ED) and magnetic dipole (MD) resonances via Mie scattering, thereby leading to appropriate spectral filtering characteristics. The ED and MD are identified from field profile observation with the assistance of finite-difference time-domain simulations. The manufactured color filters are observed to produce various colors in both transmission and reflection modes throughout the visible band, giving rise to a high transmission of around 90% in the off-resonance region and a reflection ranging up to 60%. A variety of colors can be realized by tuning the resonance by adjusting the structural parameters such as the period, diameter, and height of the SRN nanodisks. The spectral position of resonances might be flexibly tuned by tailoring the polymer surrounding the SRN nanodisks. It is anticipated that the proposed coloring devices will be actively used for color displays, imaging devices, and photorealistic color printing.

摘要

全介质超表面被认为是展示光谱滤波器的潜在平台。与氮化硅相比,富含硅的氮化硅(SRN)含有相对较大比例的硅,可表现出更高的折射率。同时,SRN的消光系数小于氢化非晶硅的消光系数,导致在较短波长下吸收损耗降低。因此,从实现全介质超表面的角度来看,SRN被推荐作为散射元件。在这项工作中,我们提出并实现了一套高效的结构色滤波器,利用由嵌入聚合物层的SRN纳米盘二维阵列组成的介电超表面。SRN纳米盘可通过米氏散射支持电偶极(ED)和磁偶极(MD)共振,从而产生适当的光谱滤波特性。借助有限时域差分模拟,从场分布观察中识别出ED和MD。观察到制造的色滤波器在整个可见光波段的透射和反射模式下都能产生各种颜色,在非共振区域产生约90%的高透射率,反射率高达60%。通过调整SRN纳米盘的周期、直径和高度等结构参数来调谐共振,可以实现多种颜色。通过定制SRN纳米盘周围的聚合物,可以灵活调整共振的光谱位置。预计所提出的着色器件将积极应用于彩色显示器、成像设备和逼真的彩色印刷。

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