An improved phase retrieval algorithm for optical aspheric surface measurement |
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Authors: | Yulie Wu Xiaojun Hu |
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Affiliation: | Department of Mechatronics Engineering, National University of Defense Technology Changsha, Hunan, PR China, 410073 |
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Abstract: | In order to overcome the measurement and calculation difficulty for aspheric surface with phase retrieval technology, an improved phase retrieval algorithm was proposed. Due to significant departure from sphere surface, reflected light from different part of the aspheric surface under test will overlap in some areas in the collected images by CCD with general phase retrieval measurement setup, which will lead to the failure to recover the surface phase. The proposed algorithm will only use those areas without light overlapping in each image in the iteration process and employ several defocused images to recover the whole surface. This algorithm can improve the measurement range for aspheric surface with phase retrieval technology. The experimental system was established and a 180 mm diameter, f/1.6 parabolic mirror and a 180 mm effective diameter, f/1.33 hyperboloid mirror were tested by the proposed method. The experimental results show that the retrieved surface errors are in good consistent with that obtained by interferometer, which confirms the validity of the proposed algorithm. |
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Keywords: | Phase retrieval Aspheric surface Surface measurement |
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