Hsu Chia Wei, Miller Owen D, Johnson Steven G, Soljačić Marin
Opt Express. 2015 Apr 6;23(7):9516-26. doi: 10.1364/OE.23.009516.
Structural coloration produces some of the most brilliant colors in nature and has many applications. Motivated by the recently proposed transparent displays that are based on wavelength-selective scattering, here we consider the new problem of transparent structural color, where objects are transparent under omnidirectional broad-band illumination but scatter strongly with a directional narrow-band light source. Transparent structural color requires two competing properties, narrow bandwidth and broad viewing angle, that have not been demonstrated simultaneously previously. Here, we use numerical optimization to discover geometries where a sharp 7% bandwidth in scattering is achieved, yet the peak wavelength varies less than 1%, and the peak height and peak width vary less than 6% over broad viewing angles (0-90°) under a directional illumination. Our model system consists of dipole scatterers arranged into several rings; interference among the scattered waves is optimized to yield the wavelength-selective and angle-insensitive response.
结构色产生了自然界中一些最为绚丽的色彩,并且有许多应用。受近期提出的基于波长选择性散射的透明显示器的启发,在此我们考虑透明结构色这一新问题,即物体在全向宽带照明下是透明的,但在定向窄带光源照射下会强烈散射。透明结构色需要两种相互矛盾的特性,即窄带宽和宽视角,而这两种特性此前尚未同时得到证实。在此,我们使用数值优化方法来发现这样的几何结构,即在定向照明下,其散射带宽达到7%的锐度,同时峰值波长变化小于1%,并且在宽视角(0 - 90°)范围内峰值高度和峰值宽度变化小于6%。我们的模型系统由排列成几个环的偶极散射体组成;优化散射波之间的干涉以产生波长选择性和角度不敏感响应。