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Anomalous self-generated electrostatic fields in nanosecond laser-plasma interaction

  • University of Rome
  • Max Plank Institute for the Physics of Complex Systems
  • CELIA, Université Bordeaux i, UMR 5107 (CNRS, Bordeaux 1, CEA)
  • Osaka University
  • LNF-INFN
  • IMB UMR 5251
  • University of California, Los Angeles
  • Fox Chase Cancer Center

Résultats de recherche: Contribution à un journalArticleRevue par des pairs

7 Citations (Scopus)

Résumé

Electrostatic (E) fields associated with the interaction of a well-controlled, high-power, nanosecond laser pulse with an underdense plasma are diagnosed by proton radiography. Using a current three-dimensional wave propagation code equipped with nonlinear and nonlocal hydrodynamics, we can model the measured E-fields that are driven by the laser ponderomotive force in the region where the laser undergoes filamentation. However, strong fields of up to 110 MV/m measured in the first millimeter of propagation cannot be reproduced in the simulations. This could point to the presence of unexpected strong thermal electron pressure gradients possibly linked to ion acoustic turbulence, thus emphasizing the need for the development of full kinetic collisional simulations in order to properly model laser-plasma interaction in these strongly nonlinear conditions.

langue originaleAnglais
Numéro d'article030705
journalPhysics of Plasmas
Volume18
Numéro de publication3
Les DOIs
étatPublié - 1 mars 2011

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