• Infrared and Laser Engineering
  • Vol. 51, Issue 9, 20220547 (2022)
Chengli Guo1, Dekang Zheng2, Deyan Zhu3、4, Xiaofei Yang5, Yuanzheng Li1, Jian Zhang1, and Liefeng Zhao1、*
Author Affiliations
  • 1Zhejiang Sunny Optics Co., Ltd., Yuyao 315400, China
  • 2College of Optical Science and Engineering, Zhejiang University, Hangzhou 310027, China
  • 3Key Laboratory of Space Photoelectric Detection and Perception, Ministry of Industry and Information Technology, Nanjing University of Aeronautics and Astronautics, Nanjing 211106, China
  • 4Aerospace Institute, Nanjing University of Aeronautics and Astronautics, Nanjing 211106, China
  • 5School of Optoelectronic Science and Engineering, Soochow University, Suzhou 215006, China
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    DOI: 10.3788/IRLA20220547 Cite this Article
    Chengli Guo, Dekang Zheng, Deyan Zhu, Xiaofei Yang, Yuanzheng Li, Jian Zhang, Liefeng Zhao. Testing of aspheric surface with low reflectivity using hybrid type computer-generated hologram (invited)[J]. Infrared and Laser Engineering, 2022, 51(9): 20220547 Copy Citation Text show less
    References

    [1] Gao Songtao, Wu Dongcheng, Yu Changsong. Computer-generated hologram design for high-precision aspherical surface testing[J]. Laser & Optoelectronics Progress, 53, 090901(2016).

    [2] Qiu Hongwei. Research on ultraprecise aspheric surface testing based on computergenerated hologram [D]. Beijing: University of Chinese Academy of Sciences, 2021. (in Chinese)

    [3] Zhou Wengcai, Xu Feng, Wei Xiaoxiao. System design of computed graphic holograph in testing the freeform surface[J]. Optics & Optoelectronic Technologty, 14, 69-73(2016).

    [4] Zhu Deyan, Zhang Xuejun. Design of high-precision phase computer-generated hologram[J]. Acta Optica Sinca, 35, 0712002(2015).

    [5] Liang Zijian, Yang Yongyin, Zhao Hongxiang, et al. Advances in research and applications of optical aspheric surface metrology[J]. Chinese Optics, 15, 161-186(2022).

    [6] Yan Lisong. Research on the algithm testing optical mirr by subaperture stitching interferometry[D]. Beijing: University of Chinese Academy of Sciences, 2015. (in Chinese)

    [7] Zhou Ping, Burge J H. Fabrication error analysis and experimental demonstration for computer-generated holograms[J]. Appl Opt, 46, 657-663(2007).

    [8] Zhao Chunyu, Burge James H. Optical testing with computer generated holograms: comprehensive err analysis [C]Proceedings of SPIE, 2013, 8838: 88380 H.

    [9] Li Fazhi, Luo Xiao, Zhao Jingli, et al. Test of off-axis aspheric surfaces with CGH[J]. Optics and Precision Engineering, 19, 709-716(2011).

    [10] Li Shijie, Zhang Jin, Liu Weiguo, et al. Measurement investigation of an off-axis aspheric surface via a hybrid compensation method[J]. Appl Opt, 57, 8220-8227(2018).

    [11] Wang Ruoqiu, Zhang Zhiyu, Bai Yingying, et al. Scanning ion beam etching: A method for the fabrication of computer-generated hologram with nanometric accuracy for aspherical testing[J]. Optics and Lasers in Engineering, 139, 106503(2021).

    [12] Bai Yingying, Zhang Zhiyu, Chen Tianbao, et al. Evaluation of wavefront aberrations induced by overlay errors in stitching computer-generated holograms[J]. Optics and Lasers in Engineering, 152, 106944(2022).

    [13] Zhu Zijue. Research on optical fiber interference sensing demodulation method based on fringe contrast measurement [D]. Wuhan: Huazhong University of Science Technology, 2021. (in Chinese)

    [14] Zhou Ping, Burge J H. Optimal design of computer-generated holograms to minimize sensitivity to fabrication errors[J]. Opt Express, 15, 15410-15417(2007).

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    Chengli Guo, Dekang Zheng, Deyan Zhu, Xiaofei Yang, Yuanzheng Li, Jian Zhang, Liefeng Zhao. Testing of aspheric surface with low reflectivity using hybrid type computer-generated hologram (invited)[J]. Infrared and Laser Engineering, 2022, 51(9): 20220547
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