Yang Zhengmei, Wang Yasi, Zhu Xupeng, Chen Yiqin, Zhang Shi, Li Ping, Duan Huigao
Appl Opt. 2021 Jan 20;60(3):551-557. doi: 10.1364/AO.410211.
Structural colors of high performance and economically feasible fabrication are desired in various applications. Herein, we demonstrate that reflective full-color filters based on the interference effect can be realized in periodic Fabry-Perot (F-P) nanocavity arrays of the same thickness. Enabled by simply adjusting the nanocavity size and array period, the resonant wavelengths can be successively tuned in the whole visible light range, which is mainly attributed to the varied effective refractive index introduced by the different filling density of the F-P nanocavity. Compared to the plasmonic colors utilizing the similar nanostructures, the proposed interference colors offer unique advantages of higher color contrast, wider gamut, and lower fabrication requirements. Besides, these color filters do not involve modulating the vertical dimensions of the F-P nanocavities, which is conducive to the monolithic integration of multicolor optical cavities and their large-area applications in consumable products combined with replica patterning techniques, such as nanoimprinting and soft lithography.
在各种应用中都需要具有高性能且经济可行的制造方法的结构色。在此,我们证明基于干涉效应的反射型全彩色滤光片可以在相同厚度的周期性法布里 - 珀罗(F - P)纳米腔阵列中实现。通过简单地调整纳米腔尺寸和阵列周期,谐振波长可以在整个可见光范围内连续调谐,这主要归因于F - P纳米腔不同填充密度引入的有效折射率变化。与利用类似纳米结构的等离子体颜色相比,所提出的干涉颜色具有更高的颜色对比度。