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利用时域有限差分(FDTD)模拟和实验验证探索微纳复合光栅的结构色

Exploring the structural color of micro-nano composite gratings with FDTD simulation and experimental validation.

作者信息

Lou Zaizhen, Yan Yongda, Wang Jiqiang, Zhang Aoxiang, Cui Hailong, Li Chen, Geng Yanquan

出版信息

Opt Express. 2024 Jan 15;32(2):2432-2451. doi: 10.1364/OE.510400.

Abstract

The significance of micro-nano composite gratings (MNCGs) resides in their applications, including optical devices, sensors, and diffractive elements, which drive research interest in their diffraction characteristics. This study investigates both the diffraction characteristics of MNCGs and the factors that influence them by employing both Finite-Difference Time-Domain (FDTD) methods and experimental validation. The initial focus lies in deciphering the differences in diffraction characteristics between micro-gratings (MGs) and MNCGs by analyzing the coupling effects, diffraction order, color distribution, and intensity variation. Additionally, this research emphatically investigates five aspects to discover the influencing factors of MNCG's diffraction characteristics, such as the height, groove angle of MGs and the period, blaze angle, and height of nano-gratings (NGs). Results show that the structural coloration and saturation of MNCG surpass that of MG. NG plays the actual spectral role, and a reduction in the period of NG leads to enhanced splitting light capability of the white light. The optical detection tests validated the simulation results. The present study reveals the diffractive properties of MNCGs, providing technical insights for the design and processing of optically variable devices.

摘要

微纳复合光栅(MNCGs)的重要性体现在其应用方面,包括光学器件、传感器和衍射元件等,这些应用引发了对其衍射特性的研究兴趣。本研究通过采用时域有限差分(FDTD)方法和实验验证,对MNCGs的衍射特性及其影响因素进行了研究。最初的重点是通过分析耦合效应、衍射级次、颜色分布和强度变化,来解读微光栅(MGs)和MNCGs之间衍射特性的差异。此外,本研究着重从五个方面进行研究,以发现影响MNCG衍射特性的因素,如MGs的高度、槽角以及纳米光栅(NGs)的周期、闪耀角和高度。结果表明,MNCG的结构色和饱和度超过了MG。NG起到了实际的光谱作用,NG周期的减小导致白光的分光能力增强。光学检测测试验证了模拟结果。本研究揭示了MNCGs的衍射特性,为光学可变器件的设计和加工提供了技术见解。

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