English

Selective Deuterium Ion Acceleration Using the Vulcan PW Laser

Plasma Physics 2015-05-20 v2

Abstract

We report on the successful demonstration of selective acceleration of deuterium ions by target-normal sheath acceleration (TNSA) with a high-energy petawatt laser. TNSA typically produces a multi-species ion beam that originates from the intrinsic hydrocarbon and water vapor contaminants on the target surface. Using the method first developed by Morrison, et al.,1^{1} an ion beam with >>99%\% deuterium ions and peak energy 14 MeV/nucleon is produced with a 200 J, 700 fs, >1020W/cm2>10^{20} W/cm^{2} laser pulse by cryogenically freezing heavy water (D2_{2}O) vapor onto the rear surface of the target prior to the shot. Within the range of our detectors (0-8.5^{\circ}), we find laser-to-deuterium-ion energy conversion efficiency of 4.3%\% above 0.7 MeV/nucleon while a conservative estimate of the total beam gives a conversion efficiency of 9.4%\%.

Keywords

Cite

@article{arxiv.1501.06390,
  title  = {Selective Deuterium Ion Acceleration Using the Vulcan PW Laser},
  author = {AG Krygier and JT Morrison and S Kar and H Ahmed and A Alejo and R Clarke and J Fuchs and A Green and D Jung and A Kleinschmidt and Z Najmudin and H Nakamura and P Norreys and M Notley and M Oliver and M Roth and L Vassura and M Zepf and M Borghesi and RR Freeman},
  journal= {arXiv preprint arXiv:1501.06390},
  year   = {2015}
}

Comments

5 pages, 5 figures

R2 v1 2026-06-22T08:12:55.990Z