论文标题
调整虹彩视觉外观,并具有无序的共振元面
Tailoring iridescent visual appearance with disordered resonant metasurfaces
论文作者
论文摘要
天然物种的纳米结构具有饱和和虹彩的颜色的美丽视觉外观,并且出现了问题,我们是否可以使用人造的metasurfaces复制甚至创造新的外观。然而,目前无法访问,利用散布着无序的跨膜的镜面和漫射光,以创造有吸引力和规定的视觉效果。在这里,我们提出了一种解释性,直观和准确的基于模态的工具,该工具揭示了主要的物理机制和特征,以定义沉积在反射底物上的共振元原子的胶体无序单层的外观。该模型表明,等离子和Fabry-Perot共振的组合提供了罕见的虹彩视觉外观,与在天然纳米结构或薄膜干扰的经典观察的情况下不同。我们强调了一种不寻常的视觉效果,仅表现出两种不同的颜色,理论上研究了其起源。该方法可在视觉外观的设计中很有用,并具有易于制造和通用的构建块对制造缺陷具有很大韧性的构建块,以及创新涂料和精细应用的潜力。
The nanostructures of natural species offer beautiful visual appearances with saturated and iridescent colors and the question arises whether we can reproduce or even create new appearances with man-made metasurfaces. However, harnessing the specular and diffuse light scattered by disordered metasurfaces to create attractive and prescribed visual effects is currently inaccessible. Here, we present an interpretive, intuitive and accurate modal-based tool that unveils the main physical mechanisms and features defining the appearance of colloidal disordered monolayers of resonant meta-atoms deposited on a reflective substrate. The model shows that the combination of plasmonic and Fabry-Perot resonances offers uncommon iridescent visual appearances, differing from those classically observed with natural nanostructures or thin-film interferences. We highlight an unusual visual effect exhibiting only two distinct colors and theoretically investigate its origin. The approach can be useful in the design of visual appearance with easy-to-make and universal building blocks having a large resilience to fabrication imperfections, and potential for innovative coatings and fine-art applications.