Design, fabrication, and performance evaluation of a concave lens array on an aspheric curved surface

微透镜 制作 镜头(地质) 光学 材料科学 机械加工 基质(水族馆) 图像质量 焦距 计算机科学 图像(数学) 物理 地质学 病理 人工智能 冶金 替代医学 海洋学 医学
作者
Jingyu Mo,Xuefeng Chang,Duoji Renqing,JINPENG ZHANG,Longxing Liao,Shanming Luo
出处
期刊:Optics Express [The Optical Society]
卷期号:30 (18): 33241-33241 被引量:2
标识
DOI:10.1364/oe.471055
摘要

A microlens array (MLA) is a fundamental optical element, which has been widely applied in the fields of imaging sensing, 3D display, and lighting source. However, it is still a challenge to design the MLAs simultaneously satisfying small size, wide field of view, and high image quality. Herein, a novel type of concave lens array on an aspheric convex substrate (CLAACs) is presented, which is composed of an aspheric substrate and a spherical concave subeye array. The facilely designed method of the CLAACs is described and its geometric model is also established by a numerical example. Furthermore, a fabrication method, which is directly machining the CLAACs on PMMA material, is proposed. To realize the ultra-precision machining of the lens, tool path planning is carried out before fabricating. The profile, surface quality, and imaging performance of the fabricated lens are then characterized to reveal its optical capabilities. The results show that the proposed method can realize the rapid design and fabrication of lenses flexibly and efficiently. The fabricated CLAACs exhibit excellent morphology uniformity, high imaging quality, and focusing performance. The study provides a feasible solution for the design and fabrication of such lens arrays with complex discontinuous surfaces.

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