A Local-Field Approach to Understanding Multibeam Laser–Plasma Instabilities

ORAL

Abstract

Laser–plasma instabilities such as stimulated Raman scattering and two-plasmon decay present a major challenge for laser-driven inertial confinement fusion. Predicting the severity of these instabilities requires a model that captures the complex, 3-D interaction of multiple laser beams, including effects such as speckle, polarization, and bandwidth. Analytic approaches typically employ the frequency and wave-vector matching condition for multiple laser beams to drive a shared daughter wave while neglecting the local field structure that results from the interference between many overlapping beams. Three-dimensional simulations, on the other hand, capture the full interaction dynamics and field structure but can obscure the underlying physical processes. Here we introduce an intermediate approach that uses a simplified model of the local field structure to study the impact of multibeam interactions on absolute instabilities.

*This material is based upon work supported by the Department of Energy National Nuclear Security Administration under Award Number DE-NA0003856 and ARPA-E BETHE under Grant Number DE-FOA-0002212.

Presenters

  • Russell K Follett

    • Laboratory for Laser Energetics, U. of Rochester
    • University of Rochester
    • Laboratory for Laser Energetics - Rochester
    • University of Rochester Departments of Mechanical Engineering, Physics, and Computer Science
    • Laboratory for Laser Energetics

Authors

  • Russell K Follett

    • Laboratory for Laser Energetics, U. of Rochester
    • University of Rochester
    • Laboratory for Laser Energetics - Rochester
    • University of Rochester Departments of Mechanical Engineering, Physics, and Computer Science
    • Laboratory for Laser Energetics
  • Dustin H Froula

    • University of Rochester
    • Laboratory for Laser Energetics, U. of Rochester
    • Lab for Laser Energetics
    • Laboratory for Laser Energetics
    • Laboratory for Laser Energetics, University of Rochester
  • Andrei V Maximov

    • University of Rochester
    • Lab for Laser Energetics
    • Laboratory for Laser Energetics, University of Rochester
  • Andrey Solodov

    • Laboratory for Laser Energetics, U. of Rochester
    • Lab for Laser Energetics
  • Han Wen

    • University of Rochester
  • Jason F Myatt

    • U. of Alberta
    • Univ of Alberta
  • Jason W Bates

    • United States Naval Research Laboratory
    • NRL
  • John P Palastro

    • Laboratory for Laser Energetics, U. of Rochester
    • Laboratory for Laser Energetics
    • University of Rochester
    • Lab for Laser Energetics
    • Laboratory for Laser Energetics, University of Rochester