4.7 Article

Coupled hydrodynamic model for laser-plasma interaction and hot electron generation

Journal

PHYSICAL REVIEW E
Volume 92, Issue 4, Pages -

Publisher

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevE.92.041101

Keywords

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Funding

  1. European Union's Horizon research and innovation programme [633053]
  2. COST action [MP1208]
  3. French National Research Agency [ANR-12-BS04-0006-04]
  4. Agence Nationale de la Recherche (ANR) [ANR-12-BS04-0006] Funding Source: Agence Nationale de la Recherche (ANR)

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We present a formulation of the model of laser-plasma interaction (LPI) at hydrodynamical scales that couples the plasma dynamics with linear and nonlinear LPI processes, including the creation and propagation of highenergy electrons excited by parametric instabilities and collective effects. This formulation accounts for laser beam refraction and diffraction, energy absorption due to collisional and resonant processes, and hot electron generation due to the stimulated Raman scattering, two-plasmon decay, and resonant absorption processes. Hot electron (HE) transport and absorption are described within the multigroup angular scattering approximation, adapted for transversally Gaussian electron beams. This multiscale inline LPI-HE model is used to interpret several shock ignition experiments, highlighting the importance of target preheating by HEs and the shortcomings of standard geometrical optics when modeling the propagation and absorption of intense laser pulses. It is found that HEs from parametric instabilities significantly increase the shock pressure and velocity in the target, while decreasing its strength and the overall ablation pressure.

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