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Global characterization of a laser-generated neutron source

  • D. P. Higginson
  • , R. Lelièvre
  • , L. Vassura
  • , M. M. Gugiu
  • , M. Borghesi
  • , L. A. Bernstein
  • , D. L. Bleuel
  • , B. L. Goldblum
  • , A. Green
  • , F. Hannachi
  • , S. Kar
  • , S. Kisyov
  • , L. Quentin
  • , M. Schroer
  • , M. Tarisien
  • , O. Willi
  • , P. Antici
  • , F. Negoita
  • , A. Allaoua
  • , J. Fuchs
  • Sorbonne Université
  • Lawrence Livermore National Laboratory
  • IRSN Institut de Radioprotection et de Sureté Nucléaire
  • University of Rome
  • Horia Hulubei National Institute of Physics and Nuclear Engineering
  • Queen's University of Belfast
  • University of California
  • Ernest Orlando Lawrence Berkeley National Laboratory
  • UMR 5797
  • Heinrich Heine University Düsseldorf
  • INRS-ÉMT

Résultats de recherche: Contribution à un journalArticleRevue par des pairs

4 Citations (Scopus)

Résumé

Laser-driven neutron sources are routinely produced by the interaction of laser-accelerated protons with a converter. They present complementary characteristics to those of conventional accelerator-based neutron sources (e.g. short pulse durations, enabling novel applications like radiography). We present here results from an experiment aimed at performing a global characterization of the neutrons produced using the Titan laser at the Jupiter Laser Facility (Livermore, USA), where protons were accelerated from 23 m thick plastic targets and directed onto a LiF converter to produce neutrons. For this purpose, several diagnostics were used to measure these neutron emissions, such as CR-39, activation foils, time-of-flight detectors and direct measurement of residual activity in the LiF converters. The use of these different, independently operating diagnostics enables comparison of the various measurements performed to provide a robust characterization. These measurements led to a neutron yield of neutrons per shot with a modest angular dependence, close to that simulated.

langue originaleAnglais
Numéro d'article905900308
journalJournal of Plasma Physics
Volume90
Numéro de publication3
Les DOIs
étatPublié - 3 juin 2024

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