English

Beamed neutron emission driven by laser accelerated light ions

Plasma Physics 2015-07-17 v1 Nuclear Experiment Accelerator Physics

Abstract

We report on the experimental observation of beam-like neutron emission with peak flux of the order of 10^9 n/sr, from light nuclei reactions in a pitcher-catcher scenario, by employing MeV ions driven by high power laser. The spatial profile of the neutron beam, fully captured for the first time by employing a CR39 nuclear track detector, shows a FWHM divergence angle of 70 degrees, with a peak flux nearly an order of magnitude higher than the isotropic component elsewhere. The observed beamed flux of neutrons is highly favourable for a wide range of applications, and indeed for further transport and moderation to thermal energies. A systematic study employing various combinations of pitcher-catcher materials indicates the dominant reactions being d(p, n+p)^1H and d(d,n)^3He. Albeit insufficient cross-section data are available for modelling, the observed anisotropy in the neutrons' spatial and spectral profiles are most likely related to the directionality and high energy of the projectile ions.

Keywords

Cite

@article{arxiv.1507.04511,
  title  = {Beamed neutron emission driven by laser accelerated light ions},
  author = {S. Kar and A. Green and H. Ahmed and A. Alejo and A. P. L. Robinson and M. Cerchez and R. Clarke and D. Doria and S. Dorkings and J. Fernandez and S. R. Mirfyazi and P. McKenna and K. Naughton and D. Neely and P. Norreys and C. Peth and H. Powell and J. A. Ruiz and J. Swain and O. Willi and M. Borghesi},
  journal= {arXiv preprint arXiv:1507.04511},
  year   = {2015}
}

Comments

6 pages, 7 figures

R2 v1 2026-06-22T10:12:58.054Z