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Large angle-independent structural colors based on all-dielectric random metasurfaces

机译:基于全介电随机元核措施的大角度无关的结构颜色

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In this work, we report large angle-independent transmission colors generated by all-dielectric random metasurfaces. The results are based on an analytical model available since few years called Coherent Scattering Model. The geometry studied consist in a random monolayer of polydisperse silicon nanoparticles supported onto a glass substrate. The generated colors reveal a large viewing angle and different colors are obtained by varying the radii of spheres. As a proof of concept, we show that it is possible to generate a palette of colors with a combination of nanospheres with different radii and surface coverages. In this regard, we present a glimpse for a potential application that can be useful to design metasurfaces that display from warm to cold whites, as the typically emitted by light bulbs. The proposed metasurfaces are suitable for fabrication, hence experimental validation of the theoretical predictions is feasible.
机译:在这项工作中,我们报告了由全介电随机元法生成的大角度无关的透射颜色。 结果基于自几年被称为相干散射模型以来的分析模型。 研究的几何形状由支撑在玻璃基板上的多分散硅纳米颗粒的随机单层组成。 所产生的颜色显示出大的视角,通过改变球体的半径来获得不同的颜色。 作为概念证明,我们表明可以用具有不同半径和表面覆盖的纳米球的组合产生颜色的调色板。 在这方面,我们为潜在的应用提出了一瞥,该潜在应用程序可以用于设计从灯泡的温度呈现的元件,因为通常由灯泡发射。 所提出的元件适用于制造,因此对理论预测的实验验证是可行的。

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