178 / 2023-04-15 14:10:23
Large-incidence-angle multi-beam two-plasmon decay instability in inertial confinement fusion
inertial confinement fusion,laser plasma instability,two plasmon decay instability,large incidence angle,multiple beams
Abstract Accepted
Fuxi Zhou / University of Science and Technology of China
Rui Yan / University of Science and Technology of China
Abstract:A new code FLAME-MD solving for the fluid-like LPI equations has been developed and used to study the multi-beam TPD process during the early time burn through of the laser entrance hole (LEH) window in indirect-drive ICF experiments. It is found that multi-beam TPD can be collectively driven by multiple beams at large incidence angles even if the single-beam laser intensity is well below the threshold. The simulations results show that the polarization configuration of the laser beams is a key factor determining the way of sharing common daughter EPWs in the multi-beam TPD processes. The p-polarized beams arranged on the same incidence cone can collectively drive common EPWs along the cone axle. The common-wave sharing mechanism among the s-polarized beams are more complicated and largely dependent on the geometry of the beams. The simulation results also show that the p-polarized beams are dominating the multi-beam TPD processes.

 
Important Date
  • Conference Date

    Jun 05

    2023

    to

    Jun 09

    2023

  • Apr 30 2023

    Early Bird Registration

  • May 01 2023

    Abstract Submission Deadline

  • May 01 2023

    Abstract Notification of Acceptance

  • May 01 2023

    Draft paper submission deadline

  • May 31 2023

    Registration deadline

Sponsored By
Science and Technology on Plasma Physics Laboratory
Department of Astronomy, Beijing Normal University
Organized By
Matter and Radiation at Extremes
Institute of Fluid Physics, China Academy of Engineering Physics, China
Institute of Applied Physics and Computational Mathematics, Beijing, China
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