Skip to main navigation Skip to search Skip to main content

Importance of magnetic resistive fields in the heating of a micro-cone target irradiated by a high intensity laser

  • E. d'Humières
  • , J. Rassuchine
  • , S. Baton
  • , J. Fuchs
  • , P. Guillou
  • , M. Koenig
  • , L. Gremillet
  • , C. Rousseaux
  • , R. Kodama
  • , M. Nakatsutsumi
  • , T. Norimatsu
  • , D. Batani
  • , A. Morace
  • , R. Redaelli
  • , F. Dorchies
  • , C. Fourment
  • , J. J. Santos
  • , J. Adams
  • , G. Korgan
  • , S. Malekos
  • Y. Sentoku, T. E. Cowan
  • CNRS
  • University of Nevada, Reno
  • Centre d'Etudes de Limeil-Valenton
  • Osaka University
  • University of Milano-Bicocca
  • CELIA, Université Bordeaux i, UMR 5107 (CNRS, Bordeaux 1, CEA)
  • NanoLabz

Research output: Contribution to journalArticlepeer-review

Abstract

Obtaining keV ion temperatures at solid density, i.e. "warm dense matter", in the laboratory would be of great interest to measure opacity and equations of state of matter under extremes conditions. Here we report a new means to effectively confine the energetic electrons and localize the energy deposition to a small, more uniformly heated, volume at the tip of nanofabricated micro-cone targets. This is achieved with very high contrast laser irradiation, which interacts with the cone wall to generate strong (∼10 MG) localized resistive magnetic fields within the target bulk. Temperatures of up to ∼200 eV are observed, with an input laser energy of 10 J. This new means has been investigated both experimentally and with Particle-In-Cell simulations.

Original languageEnglish
Pages (from-to)89-95
Number of pages7
JournalEuropean Physical Journal: Special Topics
Volume175
Issue number1
DOIs
Publication statusPublished - 1 Jan 2009

Fingerprint

Dive into the research topics of 'Importance of magnetic resistive fields in the heating of a micro-cone target irradiated by a high intensity laser'. Together they form a unique fingerprint.

Cite this