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一种用于数值模拟的高性能衍射光学元件的微加工技术。

A Microfabrication Technique for High-Performance Diffractive Optical Elements Tailored for Numerical Simulation.

作者信息

Dai Xingang, Hu Yanjun, Niu Bowen, Dai Qun, Ao Yu, Zhang Hongru, Jing Gaoshan, Li Yuan, Fan Guofang

机构信息

Key Laboratory of All Optical Network and Advanced Telecommunication Network, Ministry of Education, Institute of Lightwave Technology, Beijing Jiaotong University, Beijing 100044, China.

Institute of Microelectronics of the Chinese Academy of Sciences, Beijing 100029, China.

出版信息

Nanomaterials (Basel). 2025 Jan 17;15(2):138. doi: 10.3390/nano15020138.

Abstract

Diffractive optical elements (DOEs) are specialized optical components that manipulate light through diffraction for various applications, including holography, spectroscopy, augmented reality (AR) and virtual reality (VR), and light detection and ranging (LiDAR). The performance of DOEs is highly determined by fabricated materials and fabrication methods, in addition to the numerical simulation design. This paper presents a microfabrication technique optimized for DOEs, enabling precise control of critical parameters, such as refractive index (RI) and thickness. Using photolithography, we fabricated high-precision photoresist patterns on silicon and sapphire substrates, with 3 × 3 and 3 × 5 DOE beam splitter as examples. The results show a strong match between simulation and experimental data, with discrepancies of just 0.53% and 0.57% for DOE on silicon and sapphire substrates, respectively. This approach offers potential for advancing high-performance DOE devices in semiconductor manufacturing, supporting next-generation optical systems.

摘要

衍射光学元件(DOEs)是一种特殊的光学元件,通过衍射来操控光线,用于各种应用,包括全息术、光谱学、增强现实(AR)和虚拟现实(VR)以及光探测与测距(LiDAR)。除了数值模拟设计外,DOEs的性能很大程度上取决于所使用的制造材料和制造方法。本文介绍了一种针对DOEs优化的微制造技术,能够精确控制诸如折射率(RI)和厚度等关键参数。通过光刻技术,我们在硅和蓝宝石衬底上制作了高精度的光刻胶图案,并以3×3和3×5的DOE分束器为例进行说明。结果表明,模拟数据与实验数据高度匹配,硅衬底和蓝宝石衬底上的DOE的差异分别仅为0.53%和0.57%。这种方法为在半导体制造中推进高性能DOE器件提供了潜力,有助于支持下一代光学系统。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5d78/11767437/cbdc1001d41c/nanomaterials-15-00138-g001.jpg

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