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基于斜率的计算模型中矢量去除解耦的关键技术及其在连续相位板制造中的应用

Key technology of vector removal decoupling in a slope-based figuring model and application in continuous phase plate fabrication.

作者信息

Gao Qing, Wang Shanshan, Zhang Nansheng, Shi Feng, Qiao Shuo, Hao Qun

出版信息

Appl Opt. 2024 Jan 20;63(3):585-594. doi: 10.1364/AO.506128.

DOI:10.1364/AO.506128
PMID:38294368
Abstract

For the high-precision fabrication of a continuous phase plate (CPP), a combined decoupling algorithm of single-step decoupling based on the Clairaut-Schwarz theorem and global decoupling by stagewise iteration is proposed. It attempts to address the problem of the low accuracy and limitation of the existing slope-based figuring (SF) model in two-dimensional applications caused by the vector removal coupling between the tool slope influence function and the material removal slope due to the inherent convolution effect in the SF model. The shortcomings of CPP interferometry and the application bottleneck of the Hartmann test in traditional height-based figuring model are studied. The generation mechanism of vector removal coupling is analyzed and compensated. A CPP of 85 ×85 was successfully machined by the decoupled slope-based figuring model, and the root mean square (RMS) of the surface height error accounted for 6.01% of the RMS of the design value. The research results can effectively improve the convergence and certainty of CPP fabrication using the slope-based figuring model.

摘要

针对连续相位板(CPP)的高精度制造,提出了一种基于克莱罗 - 施瓦茨定理的单步解耦与逐阶段迭代全局解耦相结合的算法。旨在解决现有基于斜率的修形(SF)模型在二维应用中因工具斜率影响函数与材料去除斜率之间存在矢量去除耦合(由于SF模型中固有的卷积效应)而导致的精度低和局限性问题。研究了CPP干涉测量的缺点以及传统基于高度的修形模型中哈特曼测试的应用瓶颈。分析并补偿了矢量去除耦合的产生机制。采用解耦的基于斜率的修形模型成功加工出一块85×85的CPP,表面高度误差的均方根(RMS)占设计值RMS的6.01%。研究结果可有效提高基于斜率的修形模型制造CPP的收敛性和确定性。

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