• Opto-Electronic Engineering
  • Vol. 47, Issue 8, 200135 (2020)
Fan Fei*, Xu Xi, Xu Qiao, Wang Jian, Zhong Bo, Xie Ruiqing, Lei Xiangyang, Chen Xianhua, Wang Shengfei, Hou Jing, Deng Wenhui, An Chenhui, Zhou Lian, Zhao Shijie, Liao Defeng, and Zhu Yujie
Author Affiliations
  • [in Chinese]
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    DOI: 10.12086/oee.2020.200135 Cite this Article
    Fan Fei, Xu Xi, Xu Qiao, Wang Jian, Zhong Bo, Xie Ruiqing, Lei Xiangyang, Chen Xianhua, Wang Shengfei, Hou Jing, Deng Wenhui, An Chenhui, Zhou Lian, Zhao Shijie, Liao Defeng, Zhu Yujie. Progress on ultra precision manufacturing technology of large-aperture high-power laser optics[J]. Opto-Electronic Engineering, 2020, 47(8): 200135 Copy Citation Text show less

    Abstract

    The construction of high-power solid-state laser facility for inertial confinement fusion requires to precisely control the full-spatial frequency error, and realize efficient mass-manufacturing of large-aperture optics. This review summarizes the recent critical progress in manufacturing of large-aperture optics in high-power laser facility. It also emphasizes the technologies such as single point diamond fly-cutting, and aspheric ultra-precision grinding, as well as deterministic polishing, based on the deterministic ultra-precision process manufacturing method. In addition, the application status of these key technologies in the mass-manufacturing chain was stated specifically.
    Fan Fei, Xu Xi, Xu Qiao, Wang Jian, Zhong Bo, Xie Ruiqing, Lei Xiangyang, Chen Xianhua, Wang Shengfei, Hou Jing, Deng Wenhui, An Chenhui, Zhou Lian, Zhao Shijie, Liao Defeng, Zhu Yujie. Progress on ultra precision manufacturing technology of large-aperture high-power laser optics[J]. Opto-Electronic Engineering, 2020, 47(8): 200135
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