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Physics of colliding laser pulses in underdense plasmas

  • Jérôme Faure
  • , Clément Rechatin
  • , Ahmed Ben-Ismail
  • , Jaeku Lim
  • , Xavier Davoine
  • , Erik Lefebvre
  • , Victor Malka

Résultats de recherche: Contribution à un journalBref sondageRevue par des pairs

Résumé

We report on recent experimental results on electron acceleration using two counter-propagating ultrashort and ultraintense laser pulses. At the collision, the two pulses drive a standing wave which is able to pre-accelerate plasma electrons which can then be trapped in the plasma wave. Optical diagnostics of the collision reveal signatures of this standing wave. Electron acceleration results in this regime are reviewed: the use of colliding pulses enables the generation of stable, tunable and high quality electron beams at the 100-200 MeV level. Detailed comparisons with 3D Particle in Cell (PIC) simulations give deeper insight on the role of the nonlinear propagation of the pump pulse on the performance of the accelerator. This deeper understanding has allowed us to optimize the beam charge of the accelerator at high energy. To cite this article: J. Faure et al., C. R. Physique 10 (2009).

langue originaleAnglais
Pages (de - à)148-158
Nombre de pages11
journalComptes Rendus Physique
Volume10
Numéro de publication2-3
Les DOIs
étatPublié - 1 janv. 2009

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