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使用主动可调谐菲索干涉仪和泰曼-格林干涉仪测量球面的曲率半径。

Measuring the radius of curvature of spherical surfaces with actively tunable Fizeau and Twyman-Green interferometers.

作者信息

Kim Minjae, Imeri Arjent, Reza Syed Azer

出版信息

Appl Opt. 2024 May 20;63(15):4077-4087. doi: 10.1364/AO.519083.

DOI:10.1364/AO.519083
PMID:38856501
Abstract

Accurate and repeatable measurement of the radius of curvature (RoC) of spherical sample surfaces is of great importance in optics. This importance lies in the ubiquitous use of spherical optical elements such as curved mirrors and lenses. Due to a high measurement sensitivity, interferometric techniques are often deployed for accurate characterization of the sample surface RoC. One method by which a typical commercial Fizeau or Twyman-Green (TG) interferometer measures surface RoC is via scanning between two principal retroreflective optical configurations-namely, the confocal and catseye configurations. Switching between these two configurations is typically achieved by moving an optical head along the axis of the propagating laser beam and the RoC is estimated by measuring the magnitude of mechanical motion to switch between the two principal configurations. In this paper, we propose a motion-free catseye/confocal-imaging-based sample RoC measurement system. The necessity of bulk motion to switch between the two configurations is circumvented via the use of an actively controlled varifocal lens. We demonstrate the usefulness of the proposed innovation in RoC measurements with either the TG or the Fizeau interferometer. Furthermore, we convert a commercial motion-based Zygo RoC measurement system into a motion-free one by introducing a tunable lens inside the apparatus and using it to accurately characterize the RoC of different test samples. We also compute the wavefront aberrations for all spherical sample surfaces from the recorded measurement data.

摘要

精确且可重复地测量球形样品表面的曲率半径(RoC)在光学领域具有重要意义。这种重要性源于诸如曲面镜和透镜等球形光学元件的广泛应用。由于具有高测量灵敏度,干涉测量技术常被用于精确表征样品表面的RoC。典型的商用斐索或泰曼 - 格林(TG)干涉仪测量表面RoC的一种方法是通过在两种主要的后向反射光学配置之间进行扫描,即共焦配置和猫眼配置。在这两种配置之间切换通常是通过沿传播激光束的轴移动光学头来实现的,并且通过测量在两种主要配置之间切换时的机械运动幅度来估计RoC。在本文中,我们提出了一种基于无运动猫眼/共焦成像的样品RoC测量系统。通过使用主动控制的变焦透镜,避免了在两种配置之间切换时的整体运动需求。我们展示了所提出的创新在使用TG或斐索干涉仪进行RoC测量中的实用性。此外,我们通过在仪器内部引入可调透镜并使用它来精确表征不同测试样品的RoC,将商用基于运动的Zygo RoC测量系统转换为无运动系统。我们还根据记录的测量数据计算所有球形样品表面的波前像差。

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