用微尺度折射界面裁剪多反弹反射干涉

Krista Hirsch, Malak S. Rayes, Nathaniel E. Sturniolo, Clare Rider and Lauren D. Zarzar*, 
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引用次数: 0

摘要

开发由微尺度结构产生的定制虹彩的方法对于从传感器到安全材料的应用至关重要。在这里,我们通过将微尺度耐火界面与凹微结构相结合来产生多反弹反射干涉,从而实现可调谐的虹彩。通过结合设计的耐火界面,我们展示了控制进入结构腔的照明角度分布的能力,从而调节产生的颜色和反射效率。结合光线追踪模拟,对Janus液滴进行了实验分析,强调了难熔元素如何改变多反弹反射的光路并改变角度相关的颜色。此外,我们研究了轴子透镜的结合,该透镜将光折射和聚焦到微观结构上,以提高反射效率,同时保持色彩饱和度。将难熔界面与反射微观结构腔相结合,提供了可定制的路径,可定制多反弹反射干涉的结构颜色和反射性能,推动了高性能光学材料的设计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Tailoring Multibounce Reflection Interference with Microscale Refractive Interfaces

Developing approaches to tailor iridescence generated by microscale structures is essential for applications ranging from sensors to security materials. Here, we achieve tunable iridescence by combining microscale refractory interfaces with concave microstructures to generate multibounce reflection interference. By incorporating designed refractory interfaces, we demonstrate the ability to control the distribution of illumination angles entering the structured cavity thereby modulating the resulting color and reflection efficiency. Experimental analysis of Janus droplets combined with ray tracing simulations highlight how refractory elements modify the optical paths of multibounce reflections and alter the angle-dependent coloration. Additionally, we investigate the incorporation of axion lenses that refract and focus light onto the microstructure to increase reflection efficiency while maintaining color saturation. The integration of refractory interfaces with reflective microstructure cavities provides customizable routes to tailor the structural coloration and reflection performance of multibounce reflection interference, advancing the design of high-performance optical materials.

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来源期刊
ACS Applied Optical Materials
ACS Applied Optical Materials 材料科学-光学材料-
CiteScore
1.10
自引率
0.00%
发文量
0
期刊介绍: ACS Applied Optical Materials is an international and interdisciplinary forum to publish original experimental and theoretical including simulation and modeling research in optical materials complementing the ACS Applied Materials portfolio. With a focus on innovative applications ACS Applied Optical Materials also complements and expands the scope of existing ACS publications that focus on fundamental aspects of the interaction between light and matter in materials science including ACS Photonics Macromolecules Journal of Physical Chemistry C ACS Nano and Nano Letters.The scope of ACS Applied Optical Materials includes high quality research of an applied nature that integrates knowledge in materials science chemistry physics optical science and engineering.
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