首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Integrated optical inspection on surface geometry and refractive index distribution of a microlens array
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Integrated optical inspection on surface geometry and refractive index distribution of a microlens array

机译:对微透镜阵列的表面几何形状和折射率分布进行集成光学检查

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摘要

This paper presents an effective technique based on optical interferometry to investigate the surface geometry/profile and refractive index distribution of a planar microlens array. The experimental setup consists of a sodium light source and a He-Ne laser source, which are incorporated into a microscopy system. The two light sources with different coherence lengths are utilized alternatively for surface geometry and refractive index evaluation. The fringe patterns resulting from the sodium light and laser source illumination are analyzed by the proposed algorithms, fast Fourier transform (FFT) as well as fringe tracking. Experimental results demonstrate that surface profile and graded-index property of the micro-lenses can be readily determined in the same setup. In addition the common optical-path design enables the proposed setup to be insensitive to environment vibration.
机译:本文提出了一种基于光学干涉术的有效技术,以研究平面微透镜阵列的表面几何形状/轮廓和折射率分布。实验装置包括一个钠光源和一个氦氖激光源,它们被并入显微镜系统中。具有不同相干长度的两个光源可替代地用于表面几何形状和折射率评估。通过提出的算法,快速傅里叶变换(FFT)以及条纹跟踪,分析了钠光和激光源照射产生的条纹图案。实验结果表明,可以在相同设置中轻松确定微透镜的表面轮廓和渐变折射率特性。另外,通用的光路设计使建议的设置对环境振动不敏感。

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