115 / 2025-03-15 10:24:52
Laser-fusion target energy coupling considering both collisional absorption and parametric instability processes
Inertial confinement fusion,parametric instabilities,collisional absorption,stimulated Raman scattering,hot electron generation
摘要录用
WengSuming / Shanghai Jiao Tong University
盛政明 / 上海交通大学
ZhangJie / Shanghai Jiao Tong University
In laser-driven inertial confinement fusion, the energy coupling between laser beams and fusion target involves many complex processes at different spatial and temporal scales, such as the laser energy deposition and heat transport. On the one hand, the driver laser beams can deposit their energy into plasma via the inverse bremsstrahlung absorption (or collisional absorption) process, and then the deposited laser energy can be further transported to the high-density region of the fuel target via the electron heat conduction or X-ray radiation to drive the ablation and implosion. On the other hand, the interactions between the driver laser beams and the plasma will produce anomalous absorption processes by various parametric instabilities such as stimulated Raman scattering (SRS), stimulated Brillouin scattering (SBS), and two-plasmon decay (TPD). There parametric instabilities not only lead to substantial laser energy loss and radiation asymmetry but also generate hot electrons that may preheat the target and hence affect the compression efficiency and fusion energy gain.



In this report, we will first introduce how to simultaneously address the collisional absorption and parametric instabilities at large spatial and temporal scales, so as to obtain a more accurate and self-consistent description of the energy coupling between the driver laser and the fusion target. Subsequently, the strategies to mitigate parametric instabilities will be delineated, aiming to enhance the efficiency and quality of the energy coupling between the laser and fusion target.

 
重要日期
  • 会议日期

    05月12日

    2025

    05月15日

    2025

  • 03月26日 2025

    初稿截稿日期

  • 04月30日 2025

    提前注册日期

  • 05月15日 2025

    注册截止日期

主办单位
北京应用物理与计算数学研究所
陕西师范大学
承办单位
陕西师范大学
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