English

Laser-driven neutron source from high temperature D-D fusion reactions

Plasma Physics 2020-11-13 v1

Abstract

We report a laser-driven neutron source with high yield (>108>10^8/J) and high peak flux (>1025>10^{25}/cm2^2/s) derived from high-temperature deuteron-deuteron fusion reactions. The neutron yield and the fusion temperature (200\sim 200 keV) in our experiment are respectively two orders of magnitude and one order of magnitude higher than any previous laser-induced D-D fusion reaction. The high-temperature plasma is generated from thin (2μ\sim 2\,\mum), solid-density deuterium targets, produced by a cryogenic jet, irradiated by a 140 fs, 130 J petawatt laser with an F/3 off-axis parabola and a plasma mirror achieving fast volumetric heating of the target. The fusion temperature and neutron fluxes achieved here suggest future laser experiments can take advantage of neutrons to diagnose the plasma conditions and come closer to laboratory study of astrophysically-relevant nuclear physics.

Keywords

Cite

@article{arxiv.2011.06096,
  title  = {Laser-driven neutron source from high temperature D-D fusion reactions},
  author = {Xuejing Jiao and C. Curry and M. Gauthier and F. Fiuza and J. Kim and E. McCary and L. Labun and O. Z. Labun and C. Schoenwaelder and R. Roycroft and G. Tiwari and G. Glenn and F. Treffert and T. Ditmire and S. Glenzer and B. M. Hegelich},
  journal= {arXiv preprint arXiv:2011.06096},
  year   = {2020}
}

Comments

15 pages, 5 figures

R2 v1 2026-06-23T20:06:46.759Z