Theory and measurements of convective Raman side scatter in inertial confinement fusion experiments.

Michel, P; Rosenberg, M J; Seka, W; Solodov, A A; Short, R W; Chapman, T; Goyon, C; Lemos, N et al. · Phys Rev E · 2019

basic_science · Level V

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Abstract

Raman side scatter, whereby scattered light is resonant while propagating perpendicularly to a density gradient in a plasma, was identified experimentally in planar-target experiments at the National Ignition Facility at intensities orders of magnitudes below the threshold for absolute instability. We have derived a new theoretical description of convective Raman side scatter below the absolute threshold, validated by numerical simulations. We show that inertial confinement fusion experiments at full ignition scale, i.e., with mm-scale spot sizes and density scale lengths, are prone to increased coupling losses from Raman side scatter as the instability can extend from the absolute regime near the quarter-critical density to the convective regime at lower electron densities.