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Simple setup for optical characterization of microlenses

机译:微透镜光学表征的简单设置

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Scientific articles focusing on fabrication of micro-components often evaluate their optical performances by techniques such as scanning electron microscopy or surface topography only. However, deriving the optical characteristics from the shape of the optical element requires using propagation algorithms. In this paper, we present a simple and intuitive method, based on the measurement of the intensity point spread function generated by the micro-component. The setup is less expensive than common systems and does not require heavy equipments, since it requires only a microscope objective, a CMOS camera and a displacement stage. This direct characterization method consists in scanning axially and recording sequentially the focal volume. Our system, in transmissive configuration, consists in the investigation of the focus generated by the microlens, allowing measuring the axial and lateral resolutions, estimating the Strehl ratio and calculating the numerical aperture of the microlens. The optical system can also be used in reflective configuration in order to characterize micro-reflective components such as molds. The fixed imaging configuration allows rapid estimation of quality and repeatability of fabricated micro-optical elements.
机译:专注于制备微量组分的科学论文通常通过诸如扫描电子显微镜或表面形貌的技术进行评估它们的光学性能。然而,从光学元件的形状导出光学特性需要使用传播算法。在本文中,我们提出了一种简单而直观的方法,基于微量组分产生的强度点扩展功能的测量。设置比公共系统便宜,并且不需要重型设备,因为它只需要显微镜物镜,CMOS相机和位移级。该直接表征方法包括轴向扫描并顺序地录制焦卷体。我们的系统在透射配置中,在研究微透镜的研究中,允许测量轴向和横向分辨率,估计刻度和计算微透镜的数值孔径。光学系统也可以用于反射配置,以表征诸如模具的微反射部件。固定成像配置允许快速估计制造的微光学元件的质量和可重复性。

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