Published 2010 | Version v1
Journal article

Ignition target and laser-plasma instabilities

  • 1. CEA, DAM Ile-de-France, Bruyeres-le-Chatel (France)

Description

For the first time indirect drive ignition targets have been designed with the constraint of limiting laser-plasma instabilities. The amplification of these instabilities is directly proportional to the luminous flux density, it means to the sizes of the focal spots too. This study shows that increasing the sizes of the focal spots does not reduce linear amplification gains in a proportional way because the global optimization of the target implies changes in hydrodynamical conditions that in turn have an impact on the value of the amplification gain. The design of the target is a 2-step approach: the first step aims at assuring a uniform irradiation and compression of the target. The first step requires information concerning the laser focusing spots, the dimensions of the hohlraum, the inert gas contained in it, the materials of the wall. The second step is an optimization approach whose aim is to reduce the risk of laser-plasmas instabilities. This optimization is made through simulations of the amplification gains of stimulated Raman and Brillouin backscattering. This method has allowed us to design an optimized target for a rugby-shaped hohlraum. (A.C.)

Additional details

Additional titles

Original title (French)
Cible d'ignition et instabilites laser-plasma

Publishing Information

Journal Title
Chocs Avancees
Journal Issue
no.2010
Journal Page Range
p. 12-13
ISSN
1961-7399

Optional Information

Notes
5 refs.