Passer à la navigation principale Passer à la recherche Passer au contenu principal

Fast electron transport and induced heating in aluminium foils

  • J. J. Santos
  • , A. Debayle
  • , P. Nicolaï
  • , V. Tikhonchuk
  • , M. Manclossi
  • , D. Batani
  • , A. Guemnie-Tafo
  • , J. Faure
  • , V. Malka
  • , J. J. Honrubia
  • CELIA, Université Bordeaux i, UMR 5107 (CNRS, Bordeaux 1, CEA)
  • Laboratory d'Optique Appliquée, ENSTA, CNRS-École Polytechnique
  • University of Milano-Bicocca
  • Universidad Politécnica de Madrid

Résultats de recherche: Contribution à un journalArticle de conférenceRevue par des pairs

Résumé

Beams of fast electrons have been generated from the ultra-intense laser interaction with Aluminium foil targets. The dynamics of the fast electrons propagation and the level of induced in-depth heating have been investigated using the optical emission from the foils rear side. Important yields of thermal emission, consequence of high target temperatures, were detected for targets thinner than 50 μm. We precisely characterized the targets in-depth temperature profile in order to reproduce the emission yields. At shallow depth, we show the important heating (estimated to > 100 eV till 15 μm depth) has a resistive origin upon the neutralizing return current. For deeper regions, because of the bulk component divergence, the fast electron energy losses and induced heating are due to collisions. Coupling the model to the experimental measurements, we were able to quantify the bulk of the fast electron population, corresponding to 35% of the laser energy and a 500 keV temperature.

langue originaleAnglais
Numéro d'article022088
journalJournal of Physics: Conference Series
Volume112
Numéro de publicationPart 2
Les DOIs
étatPublié - 12 juin 2008
Evénement5th International Conference on Inertial Fusion Sciences and Applications, IFSA 2007 - Kobe, Japon
Durée: 9 sept. 200714 sept. 2007

Empreinte digitale

Examiner les sujets de recherche de « Fast electron transport and induced heating in aluminium foils ». Ensemble, ils forment une empreinte digitale unique.

Contient cette citation