• Chinese Journal of Lasers
  • Vol. 46, Issue 9, 901007 (2019)
Qi Wei, He Shukai, Yan Yonghong, Zhou Weimin, and Gu Yuqiu
Author Affiliations
  • Science and Technology on Plasma Physics Laboratory, Laser Fusion Research Center,China Academy of Engineering Physics, Mianyang, Sichuan 621900, China
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    DOI: 10.3788/CJL201946.0901007 Cite this Article Set citation alerts
    Qi Wei, He Shukai, Yan Yonghong, Zhou Weimin, Gu Yuqiu. Numerical Simulation of Photoneutron Generation in Ultra-Intense Short Laser-Solid Interactions[J]. Chinese Journal of Lasers, 2019, 46(9): 901007 Copy Citation Text show less
    Arrangement of Fluka simulation
    Fig. 1. Arrangement of Fluka simulation
    Cross section of photonuclear reaction for different materials
    Fig. 2. Cross section of photonuclear reaction for different materials
    Comparison of neutron yields of different materials
    Fig. 3. Comparison of neutron yields of different materials
    Neutron yield versus spread angle
    Fig. 4. Neutron yield versus spread angle
    Neutron space distributions. (a) Neutron yield versus target thickness at different electron temperatures; (b) variation in B with target thickness
    Fig. 5. Neutron space distributions. (a) Neutron yield versus target thickness at different electron temperatures; (b) variation in B with target thickness
    Size of neutron source. Statistical distributions of (a) neutron generation position on XY plane and (b) different depths in target on YZ plane; (c) FWHM of distribution function on YZ plane when electron spread angles are 20°and 40°
    Fig. 6. Size of neutron source. Statistical distributions of (a) neutron generation position on XY plane and (b) different depths in target on YZ plane; (c) FWHM of distribution function on YZ plane when electron spread angles are 20°and 40°
    Normalized angular distributions of neutron flux. (a) Different materials; (b) different electron temperatures; (c) different radii of target; (d) neutron yield for different target radii
    Fig. 7. Normalized angular distributions of neutron flux. (a) Different materials; (b) different electron temperatures; (c) different radii of target; (d) neutron yield for different target radii
    Photoneutron spectra at different electron temperatures normalized by peak value
    Fig. 8. Photoneutron spectra at different electron temperatures normalized by peak value
    Time distribution and revolution of neutrons. (a) Time distribution of normalized neutron production intensity; (b) revolution of neutron flux on rare surface of target
    Fig. 9. Time distribution and revolution of neutrons. (a) Time distribution of normalized neutron production intensity; (b) revolution of neutron flux on rare surface of target
    Qi Wei, He Shukai, Yan Yonghong, Zhou Weimin, Gu Yuqiu. Numerical Simulation of Photoneutron Generation in Ultra-Intense Short Laser-Solid Interactions[J]. Chinese Journal of Lasers, 2019, 46(9): 901007
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