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Absolute measurement method for correction of low-spatial frequency surface figures of aspherics
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Absolute measurement method for correction of low-spatial frequency surface figures of aspherics

Wei-Cheng Lin, Shenq-Tsong Chang, Cheng-Fang Ho, Ching-Hsiang Kuo, Chien-Kai Chung, Wei-Yao Hsu, Shih-Feng TsengCheng-Kuo Sung
Optical Engineering, 卷.56(5), 055101
05/2017

摘要

absolute aspheric testing computer-generated holograms gravity distortion mounting deformation random ball test Zernike coefficient Atomic and Molecular Physics and Optics Engineering (all)
An absolute measurement method involving a computer-generated hologram to facilitate the identification of manufacturing form errors and mounting- and gravity-induced deformations of a 300-mm aspheric mirror is proposed. In this method, the frequency and magnitude of the curve graph plotted from each Zernike coefficient obtained by rotating the mirror with various orientations about optical axis were adopted to distinguish the nonrotationally symmetric aberration. In addition, the random ball test was used to calibrate the rotationally symmetric aberration (spherical aberration). The measured absolute surface figure revealed that a highly accurate aspheric surface with a peak-to-valley value of 1/8 wave at 632.8 nm was realized after the surface figure was corrected using the reconstructed error map.

相關連結

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1 檢視次數

詳細資料

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