English

Global Characterization of a Laser-Generated Neutron Source

Accelerator Physics 2023-12-22 v1 Nuclear Experiment Plasma Physics

Abstract

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 μm\mu 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 7^{7}Be 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 2.1092.10^{9} neutrons per shot with a modest angular dependence, close to that simulated.

Keywords

Cite

@article{arxiv.2312.14110,
  title  = {Global Characterization of a Laser-Generated Neutron Source},
  author = {D. P. Higginson and R. Lelièvre and L. Vassura and M. M. Gugiu and M. Borghesi and L. A. Bernstein and D. L. Bleuel and B. L. Goldblum and A. Green and F. Hannachi and S. Kar and S. Kisyov and L. Quentin and M. Schroer and M. Tarisien and O. Willi and P. Antici and F. Negoita and A. Allaoua and J. Fuchs},
  journal= {arXiv preprint arXiv:2312.14110},
  year   = {2023}
}
R2 v1 2026-06-28T13:59:03.268Z