色域
结构着色
原色
材料科学
调色板(绘画)
光电子学
像素
高颜色
RGB颜色模型
光学
全彩
彩色滤光片阵列
等离子体子
计算机科学
彩色图像
彩色凝胶
纳米技术
计算机视觉
物理
光子晶体
图像(数学)
图像处理
操作系统
薄膜晶体管
图层(电子)
作者
Trevon Badloe,Joohoon Kim,Inki Kim,Wonsik Kim,Wook Sung Kim,Young‐Ki Kim,Junsuk Rho
标识
DOI:10.1038/s41377-022-00806-8
摘要
Abstract Taking inspiration from beautiful colors in nature, structural colors produced from nanostructured metasurfaces have shown great promise as a platform for bright, highly saturated, and high-resolution colors. Both plasmonic and dielectric materials have been employed to produce static colors that fulfil the required criteria for high-performance color printing, however, for practical applications in dynamic situations, a form of tunability is desirable. Combinations of the additive color palette of red, green, and blue enable the expression of further colors beyond the three primary colors, while the simultaneous intensity modulation allows access to the full color gamut. Here, we demonstrate an electrically tunable metasurface that can represent saturated red, green, and blue pixels that can be dynamically and continuously controlled between on and off states using liquid crystals. We use this to experimentally realize ultrahigh-resolution color printing, active multicolor cryptographic applications, and tunable pixels toward high-performance full-color reflective displays.
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