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基于点的光学空间路径三维形貌计量的表面配准和拟合算法的自由曲面光学特性描述。

Freeform optics characterization with surface registration and fitting algorithms for optical point-based spatial path 3D topography metrology.

出版信息

Appl Opt. 2023 Jan 20;62(3):573-583. doi: 10.1364/AO.477299.

Abstract

Accurate characterization of the form error for freeform optics is critical for controlled manufacturing and evaluation of optical properties. To solve the difficulty of current surface registration and fitting algorithms, and improve characterization accuracy of the form error of freeform optics for optical point-based spatial path 3D topography metrology, in this paper, improved surface registration and fitting algorithms are proposed, including a B-spline surface description of freeform optics, point orthogonal projection, registration parameter optimization, and B-spline fitting. Limited by the angular characteristics of an optical point-based sensor, the slope and reference frame of freeform optics must be flexibly adjusted, and polynomial surfaces are described and fitted as B-spline surfaces based on B-spline geometric invariance. To efficiently determine corresponding points on B-spline surfaces, the point orthogonal projection algorithm without Bezier subdivision is proposed using the first-order Newton method. Then, the iteration procedure of coordinate adjustment in sphere space using Lie algebra registration parameters is proposed to solve the difficulty of the current registration parameter optimization procedure. To fit a spatial path form error, the least squares B-spline fitting method is proposed to improve the Zernike method. Through simulation experiments, the proposed registration algorithm with good convergence can improve accuracy by one to two orders of magnitude compared with current registration algorithms. Through repeated experiments of a freeform prism, the proposed method can significantly improve the peak-to-valley and RMS accuracies compared with the stylus method, and characterize the mid-high frequency form error (about 200 nm) of a freeform prism.

摘要

自由曲面光学元件的面形误差精确描述对于控制制造和光学性能评估至关重要。为了解决当前表面配准和拟合算法的困难,提高基于光学点的空间路径三维形貌计量的自由曲面光学元件面形误差的表征精度,本文提出了改进的表面配准和拟合算法,包括自由曲面光学元件的 B 样条曲面描述、点正交投影、配准参数优化和 B 样条拟合。受基于光学点传感器的角度特性限制,自由曲面光学元件的斜率和参考系必须灵活调整,并基于 B 样条几何不变性,用多项式曲面描述和拟合 B 样条曲面。为了有效地确定 B 样条曲面上的对应点,提出了无需 Bezier 细分的点正交投影算法,利用一阶牛顿法。然后,提出了基于李代数配准参数的球空间坐标调整迭代过程,以解决当前配准参数优化过程的困难。为了拟合空间路径面形误差,提出了基于最小二乘 B 样条拟合的 Zernike 方法改进方法。通过仿真实验,与当前配准算法相比,所提出的具有良好收敛性的配准算法可以将精度提高一到两个数量级。通过对自由曲面棱镜的重复实验,与触针法相比,该方法可以显著提高峰谷值和 RMS 精度,并能够对自由曲面棱镜的中高频面形误差(约 200nm)进行表征。

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