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宽色域等离子体颜色滤波器的互补设计方法。

Wide-gamut plasmonic color filters using a complementary design method.

机构信息

Display and Nanosystem Laboratory, College of Engineering, Korea University, Seoul 136-713, Republic of Korea.

Display Laboratory, Samsung Display Co., LTD., Yongin 17113, Republic of Korea.

出版信息

Sci Rep. 2017 Jan 13;7:40649. doi: 10.1038/srep40649.

Abstract

Plasmonic color filters (PCFs) can acquire primary colors from non-polarized incident light through a two-dimensional arrangement of subwavelength holes. However, owing to the geometry of the 2D array, unintended secondary transmitted peaks derived from the higher-order modes of the surface plasmon resonance (SPR) lead to color cross-talk with the primary peaks. Herein, we propose a complementary design method for generating high-purity red, green, and blue (R/G/B) by combining the G/B filters of hole-arrays with the R filters of dot-arrays. Metallic dot-array filters, wherein the wavelength band under 575 nm was effectively blocked by the induction of peak broadening, operated as optical high-pass filters exhibiting pure red, and consequently widen the color gamut of PCFs by 30% without loss of luminance and color tunability. This harmonious combination promises to yield competitiveness for a next-generation color filter by enhancing the color reproducibility of plasmonic nanostructures.

摘要

等离子体色滤光片(PCFs)可以通过亚波长孔的二维排列从非偏振入射光中获取基色。然而,由于二维阵列的几何形状,源自表面等离子体共振(SPR)高阶模式的意外二次透射峰导致与基峰的颜色串扰。在此,我们提出了一种通过组合孔阵列的 G/B 滤波器与点阵列的 R 滤波器来产生高纯度红、绿、蓝(R/G/B)的互补设计方法。金属点阵列滤波器通过诱导峰展宽有效地阻挡了 575nm 以下的波长带,作为光学高通滤波器工作,表现出纯红色,从而在不损失亮度和颜色可调性的情况下将 PCFs 的色域拓宽了 30%。这种和谐的组合有望通过增强等离子体纳米结构的颜色再现性来提高下一代色滤光片的竞争力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/800a/5234004/5dd20381516b/srep40649-f1.jpg

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