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Laser smoothing and imprint reduction with a foam layer in the multikilojoule regime

  • S. Depierreux
  • , C. Labaune
  • , D. T. Michel
  • , C. Stenz
  • , P. Nicolaï
  • , M. Grech
  • , G. Riazuelo
  • , S. Weber
  • , C. Riconda
  • , V. T. Tikhonchuk
  • , P. Loiseau
  • , N. G. Borisenko
  • , W. Nazarov
  • , S. Hüller
  • , D. Pesme
  • , M. Casanova
  • , J. Limpouch
  • , C. Meyer
  • , P. Di-Nicola
  • , R. Wrobel
  • E. Alozy, P. Romary, G. Thiell, G. Soullié, C. Reverdin, B. Villette
  • CEA/UVSQ/CNRS
  • CELIA, Université Bordeaux i, UMR 5107 (CNRS, Bordeaux 1, CEA)
  • Max Plank Institute for the Physics of Complex Systems
  • P.N. Lebedev Physical Institute of the Russian Academy of Sciences
  • University of St Andrews
  • CNRS
  • Czech Technical University in Prague

Résultats de recherche: Contribution à un journalArticleRevue par des pairs

93 Citations (Scopus)

Résumé

This Letter presents first experimental results of the laser imprint reduction in fusion scale plasmas using a low-density foam layer. The experiments were conducted on the LIL facility at the energy level of 12kJ with millimeter-size plasmas, reproducing the conditions of the initial interaction phase in the direct-drive scheme. The results include the generation of a supersonic ionization wave in the foam and the reduction of the initial laser fluctuations after propagation through 500μm of foam with limited levels of stimulated Brillouin and Raman scattering. The smoothing mechanisms are analyzed and explained.

langue originaleAnglais
Numéro d'article195005
journalPhysical Review Letters
Volume102
Numéro de publication19
Les DOIs
étatPublié - 14 mai 2009

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