• High Power Laser and Particle Beams
  • Vol. 32, Issue 3, 032001 (2020)
Shasha Gao, Xiaojun Wu, Zhibing He*, Xiaoshan He, Tao Wang, Fanghua Zhu, and Zhanwen Zhang
Author Affiliations
  • Research Center of Laser Fusion, CAEP, P. O. Box 919-987, Mianyang 621900, China
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    DOI: 10.11884/HPLPB202032.200039 Cite this Article
    Shasha Gao, Xiaojun Wu, Zhibing He, Xiaoshan He, Tao Wang, Fanghua Zhu, Zhanwen Zhang. Research progress of fabrication techniques for laser inertial confinement fusion target[J]. High Power Laser and Particle Beams, 2020, 32(3): 032001 Copy Citation Text show less
    Two drive modes of ICF
    Fig. 1. Two drive modes of ICF
    Expanded view of the National Ignition Facility(NIF) target
    Fig. 2. Expanded view of the National Ignition Facility(NIF) target
    Capsule design for NIF
    Fig. 3. Capsule design for NIF
    Schematics of GDP shells fabrication
    Fig. 4. Schematics of GDP shells fabrication
    Si-PDVB fabricated by iCVD technology
    Fig. 5. Si-PDVB fabricated by iCVD technology
    Schematics of HDC capsules fabrication
    Fig. 6. Schematics of HDC capsules fabrication
    Be capsule for tumble polishing
    Fig. 7. Be capsule for tumble polishing
    Schematics of ultra-thin tents
    Fig. 8. Schematics of ultra-thin tents
    Schematics of supported capules
    Fig. 9. Schematics of supported capules
    Assembly of “tetra-cage”
    Fig. 10. Assembly of “tetra-cage”
    Schematics of the superconducting magnetic levitation to support capsule
    Fig. 11. Schematics of the superconducting magnetic levitation to support capsule
    New designs of the NIF hohlraums
    Fig. 12. New designs of the NIF hohlraums
    Progression of the steps for machining a Ta2O5foam liner
    Fig. 13. Progression of the steps for machining a Ta2O5foam liner
    Assembly of ϕ2.5 μm fill tube and capsule
    Fig. 14. Assembly of ϕ2.5 μm fill tube and capsule
    Shasha Gao, Xiaojun Wu, Zhibing He, Xiaoshan He, Tao Wang, Fanghua Zhu, Zhanwen Zhang. Research progress of fabrication techniques for laser inertial confinement fusion target[J]. High Power Laser and Particle Beams, 2020, 32(3): 032001
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