• High Power Laser and Particle Beams
  • Vol. 32, Issue 11, 112004 (2020)
Zhurong Cao1, Qiangqiang Wang1, Bo Deng1, Tao Chen1, Keli Deng1, Weirong Wang2, Xingyu Peng3, Zhongjing Chen1, Zheng Yuan1, Yukun Li1, Peng Wang1, Bolun Chen1, Feng Wang1, Haien He1, Xingzhu Li2, Zeping Xu3, Dong Yang1, Jiamin Yang1, Shaoen Jiang1, Yongkun Ding4, and Weiyan Zhang5
Author Affiliations
  • 1Laser Fusion Research Center, CAEP, Mianyang 621900, China
  • 2Institute of Fluid Physics, CAEP, Mianyang 621900, China
  • 3Institute of Nuclear Physics and Chemistry, CAEP, Mianyang 621900, China
  • 4Institute of Applied Physics and Computational Mathematics, Beijing, 100094, China
  • 5China Academy of Engineering Physics, Mianyang 621900, China
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    DOI: 10.11884/HPLPB202032.200099 Cite this Article
    Zhurong Cao, Qiangqiang Wang, Bo Deng, Tao Chen, Keli Deng, Weirong Wang, Xingyu Peng, Zhongjing Chen, Zheng Yuan, Yukun Li, Peng Wang, Bolun Chen, Feng Wang, Haien He, Xingzhu Li, Zeping Xu, Dong Yang, Jiamin Yang, Shaoen Jiang, Yongkun Ding, Weiyan Zhang. Progress of X-ray high-speed photography technology used in laser driven inertial confinement fusion[J]. High Power Laser and Particle Beams, 2020, 32(11): 112004 Copy Citation Text show less
    Application of X-ray high-speed photography diagnostic technology in indirect drive inertial confinement fusion (ICF)
    Fig. 1. Application of X-ray high-speed photography diagnostic technology in indirect drive inertial confinement fusion (ICF)
    Performance of X-ray framing camera system developed by Laser Fusion Research Center (LFRC),China Academy of Engineering Physics (CAEP)
    Fig. 2. Performance of X-ray framing camera system developed by Laser Fusion Research Center (LFRC),China Academy of Engineering Physics (CAEP)
    X-ray framing camera developed by LFRC, CAEP
    Fig. 3. X-ray framing camera developed by LFRC, CAEP
    Working principle of dilation X-ray imager
    Fig. 4. Working principle of dilation X-ray imager
    Dilation X-ray imager developed by LFRC,CAEP
    Fig. 5. Dilation X-ray imager developed by LFRC,CAEP
    Working principle of micro-sweep picosecond gate technology
    Fig. 6. Working principle of micro-sweep picosecond gate technology
    Simulation model established in MCNP in 3D space
    Fig. 7. Simulation model established in MCNP in 3D space
    Experimental verification of the integrated hardening effect of the weight-limiting scheme on CCD
    Fig. 8. Experimental verification of the integrated hardening effect of the weight-limiting scheme on CCD
    Spatial distribution of target debris at different times
    Fig. 9. Spatial distribution of target debris at different times
    Target debris measurement system
    Fig. 10. Target debris measurement system
    Zhurong Cao, Qiangqiang Wang, Bo Deng, Tao Chen, Keli Deng, Weirong Wang, Xingyu Peng, Zhongjing Chen, Zheng Yuan, Yukun Li, Peng Wang, Bolun Chen, Feng Wang, Haien He, Xingzhu Li, Zeping Xu, Dong Yang, Jiamin Yang, Shaoen Jiang, Yongkun Ding, Weiyan Zhang. Progress of X-ray high-speed photography technology used in laser driven inertial confinement fusion[J]. High Power Laser and Particle Beams, 2020, 32(11): 112004
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