Hot Electron Generation Mechanisms in Ignition-Scale Direct-Drive Coronal Plasmas on the NIF
ORAL
Abstract
Planar experiments at the NIF have diagnosed laser-plasma interactions and hot-electron production at plasma conditions uniquely relevant to direct-drive ignition designs, in which hot electrons could potentially preheat the capsule. Stimulated Raman scattering (SRS) is observed at the quarter-critical density and at lower densities. Comparison of hard x-ray and SRS signatures indicates a correlation between underdense SRS and hot electron generation, though the saturated absolute SRS instability at quarter-critical may contribute as well. Measurements of 3$\omega $/2 emission provide information about SRS and two-plasmon decay plasma waves near quarter-critical. LPSE and PIC modeling support interpretation of the experimental findings. These results are used to assess where in the density profile and through which physical mechanisms hot electrons are produced, which guides hot-electron preheat mitigation strategies for direct-drive--ignition designs. This material is based upon work supported by the Department of Energy National Nuclear Security Administration under Award Number DE-NA0003856.
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Authors
M.J. Rosenberg
U. of Rochester's Laboratory for Laser Energetics
LLE
University of Rochester, Laboratory for Laser Energetics
Laboratory for Laser Energetics, University of Rochester
Laboratory for Laser Energetics, U. of Rochester
Laboratory for Laser Energetics
University of Rochester
Andrey Solodov
Laboratory for Laser Energetics, University of Rochester
Univ of Rochester
University of Rochester
Wolf Seka
Laboratory for Laser Energetics, University of Rochester
Laboratory for Laser Energetics
Russ Follett
Laboratory for Laser Energetics
Laboratory for Laser Energetics, University of Rochester
University of Rochester
LLE rochester
A. V. Maximov
Laboratory for Laser Energetics, University of Rochester
Laboratory for Laser Energetics
University of Rochester
University of Rochester, NY 14623, USA
Chuang Ren
Laboratory for Laser Energetics, University of Rochester
Shihui Cao
Laboratory for Laser Energetics, University of Rochester
Sean Regan
LLE
University of Rochester, Laboratory for Laser Energetics
University of Rochester - LLE
University of Rochester
Laboratory for Laser Energetics, U. of Rochester
Laboratory for Laser Energetics, University of Rochester
Laboratory for Laser Energetics
Radha Bahukutumbi
LLE
University of Rochester
University of Rochester - LLE
Laboratory for Laser Energetics, University of Rochester
Laboratory for laser Energetics, University of Rochester
Laboratory for Laser Energetics, U. of Rochester
Laboratory for Laser Energetics
Tim Collins
LLE
University of Rochester
University of Rochester - LLE
Laboratory for Laser Energetics, University of Rochester
Laboratory for Laser Energetics
D.H. Froula
Laboratory for Laser Energetics
Laboratory for Laser Energetics, University of Rochester
University of Rochester
LLE rochester
University of Rochester, Laboratory for Laser Energetics
J.P. Palastro
Laboratory for Laser Energetics
Laboratory for Laser Energetics, U. of Rochester
Laboratory for Laser Energetics, University of Rochester
University of Rochester
University of Rochester, Laboratory for Laser Energetics
V. N. Goncharov
Laboratory for Laser Energetics
University of Rochester, Laboratory for Laser Energetics
University of Rochester - LLE
Laboratory for Laser Energetics, University of Rochester
Laboratory for Laser Energetics, U. of Rochester
University of Rochester
Laboratory for laser Energetics, University of Rochester