• High Power Laser and Particle Beams
  • Vol. 35, Issue 2, 022001 (2023)
Delong Xiao, Xiaoguang Wang, Guanqiong Wang, Chongyang Mao, and Shunkai Sun
Author Affiliations
  • Institute of Applied Physics and Computational Mathematics, Beijing 100094, China
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    DOI: 10.11884/HPLPB202335.220253 Cite this Article
    Delong Xiao, Xiaoguang Wang, Guanqiong Wang, Chongyang Mao, Shunkai Sun. Theoretical research on key issues and design of integrated MagLIF experiments on the 7−8 MA facility[J]. High Power Laser and Particle Beams, 2023, 35(2): 022001 Copy Citation Text show less
    Schematic of MagLIF cross section
    Fig. 1. Schematic of MagLIF cross section
    Simplified equivalent circuit model
    Fig. 2. Simplified equivalent circuit model
    Liner trajectories and the simulated drive current
    Fig. 3. Liner trajectories and the simulated drive current
    Variation of averaged liner and fuel temperatures and neutron production rate with time
    Fig. 4. Variation of averaged liner and fuel temperatures and neutron production rate with time
    Variation of energy terms with time in liner
    Fig. 5. Variation of energy terms with time in liner
    Variation of energy terms in fuel
    Fig. 6. Variation of energy terms in fuel
    Variation of neutron yield and peak fuel temperature with initial fuel density
    Fig. 7. Variation of neutron yield and peak fuel temperature with initial fuel density
    Variation of neutron yield and peak current with initial load height
    Fig. 8. Variation of neutron yield and peak current with initial load height
    Variation of simulated parameters with initial axial magnetic field
    Fig. 9. Variation of simulated parameters with initial axial magnetic field
    Variation of neutron yield and peak fuel temperature with preheating energy
    Fig. 10. Variation of neutron yield and peak fuel temperature with preheating energy
    Variation of neutron yield and pdV work to fuel with aspect ratio
    Fig. 11. Variation of neutron yield and pdV work to fuel with aspect ratio
    Variation of normalized neutron yield with mass ratio of beryllium impurity
    Fig. 12. Variation of normalized neutron yield with mass ratio of beryllium impurity
    Contours of neutron yield with initial axial magnetic field and fuel density without fuel mixing
    Fig. 13. Contours of neutron yield with initial axial magnetic field and fuel density without fuel mixing
    Contours of neutron yield with initial axial magnetic field and fuel density with 50% fuel mix
    Fig. 14. Contours of neutron yield with initial axial magnetic field and fuel density with 50% fuel mix
    Variation of neutron yield with impurity mass ratio using beryllium and aluminum liners
    Fig. 15. Variation of neutron yield with impurity mass ratio using beryllium and aluminum liners
    Delong Xiao, Xiaoguang Wang, Guanqiong Wang, Chongyang Mao, Shunkai Sun. Theoretical research on key issues and design of integrated MagLIF experiments on the 7−8 MA facility[J]. High Power Laser and Particle Beams, 2023, 35(2): 022001
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