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Structural Color Filters Enabled by a Dielectric Metasurface Incorporating Hydrogenated Amorphous Silicon Nanodisks

机译:通过介电结合了氢化非晶硅纳米盘的介电表面实现的结构滤色片。

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摘要

It is advantageous to construct a dielectric metasurface in silicon due to its compatibility with cost-effective, mature processes for complementary metal-oxide-semiconductor devices. However, high-quality crystalline-silicon films are difficult to grow on foreign substrates. In this work, we propose and realize highly efficient structural color filters based on a dielectric metasurface exploiting hydrogenated amorphous silicon (a-Si:H), known to be lossy in the visible regime. The metasurface is comprised of an array of a-Si:H nanodisks embedded in a polymer, providing a homogeneously planarized surface that is crucial for practical applications. The a-Si:H nanodisk element is deemed to individually support an electric dipole (ED) and magnetic dipole (MD) resonance via Mie scattering, thereby leading to wavelength-dependent filtering characteristics. The ED and MD can be precisely identified by observing the resonant field profiles with the assistance of finite-difference time-domain simulations. The completed color filters provide a high transmission of around 90% in the off-resonance band longer than their resonant wavelengths, exhibiting vivid subtractive colors. A wide range of colors can be facilitated by tuning the resonance by adjusting the structural parameters like the period and diameter of the a-Si:H nanodisk. The proposed devices will be actively utilized to implement color displays, imaging devices, and photorealistic color printing.
机译:在硅中构造介电超表面是有利的,因为它与用于互补金属氧化物半导体器件的经济有效的成熟工艺兼容。但是,高质量的结晶硅膜很难在异质衬底上生长。在这项工作中,我们提出并实现了一种基于介电超表面的高效结构彩色滤光片,该介电超表面利用了氢化非晶硅(a-Si:H),已知在可见光范围内有损耗。超表面由嵌入聚合物中的a-Si:H纳米磁盘阵列组成,可提供对实际应用至关重要的均匀平坦的表面。认为a-Si:H纳米盘元件通过Mie散射分别支持电偶极子(ED)和磁偶极子(MD)共振,从而产生依赖于波长的滤波特性。通过在有限差分时域仿真的帮助下观察共振场轮廓,可以精确识别ED和MD。完整的彩色滤光片在非共振带中的透射率比其共振波长长,约为90%,表现出鲜艳的减色。通过调节结构参数(如a-Si:H纳米盘的周期和直径)来调节共振,可以促进多种颜色。所提出的设备将被积极地用于实现彩色显示器,成像设备和逼真的彩色打印。

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