174 / 2023-04-15 10:53:23
Two-plasmon-decay instability in the non-eigenmode regime in laser plasma interaction
laser plasma interaction,two-plasmon-decay instability,hot electrons generation,non-eigenmode
Abstract Accepted
Charles Frederick Wu / 上海交通大学
ZhengMing Sheng / 上海交通大学
yao Zhao / 中山大学
It is shown theoretically that two-plasmon-decay instability (TPD) in plasma can be excited in the non-eigenmode regime, where the plasma density is larger than the quarter critical density.  This appears when the laser amplitude is larger than a certain threshold value, which increases with plasma density. In this case, the excited electrostatic mode has a constant frequency around half of the incident light frequency. The theoretical model indicates that the threshold of non-eigenmode TPD is nearly twice higher than non-eigenmode SRS. The theoretical model is validated by particle-in-cell simulations. The simulation results show that the non-eigenmode mode TPD has a higher threshold amplitude for the pump laser than the non-eigenmode mode of stimulated Raman scattering (SRS) excited in the plasma region above the quarter critical density. The excitation of the non-eigenmode TPD can generate hot electrons with higher energy than the non-eigenmode SRS.

 
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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