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All-dielectric metasurface for high-performance structural color.


ABSTRACT: The achievement of structural color has shown advantages in large-gamut, high-saturation, high-brightness, and high-resolution. While a large number of plasmonic/dielectric nanostructures have been developed for structural color, the previous approaches fail to match all the above criterion simultaneously. Herein we utilize the Si metasurface to demonstrate an all-in-one solution for structural color. Due to the intrinsic material loss, the conventional Si metasurfaces only have a broadband reflection and a small gamut of 78% of sRGB. Once they are combined with a refractive index matching layer, the reflection bandwidth and the background reflection are both reduced, improving the brightness and the color purity significantly. Consequently, the experimentally demonstrated gamut has been increased to around 181.8% of sRGB, 135.6% of Adobe RGB, and 97.2% of Rec.2020. Meanwhile, high refractive index of silicon preserves the distinct color in a pixel with 2?×?2 array of nanodisks, giving a diffraction-limit resolution.

SUBMITTER: Yang W 

PROVIDER: S-EPMC7171068 | biostudies-literature | 2020 Apr

REPOSITORIES: biostudies-literature

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All-dielectric metasurface for high-performance structural color.

Yang Wenhong W   Xiao Shumin S   Song Qinghai Q   Liu Yilin Y   Wu Yunkai Y   Wang Shuai S   Yu Jie J   Han Jiecai J   Tsai Din-Ping DP  

Nature communications 20200420 1


The achievement of structural color has shown advantages in large-gamut, high-saturation, high-brightness, and high-resolution. While a large number of plasmonic/dielectric nanostructures have been developed for structural color, the previous approaches fail to match all the above criterion simultaneously. Herein we utilize the Si metasurface to demonstrate an all-in-one solution for structural color. Due to the intrinsic material loss, the conventional Si metasurfaces only have a broadband refl  ...[more]

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