Efficient neutron production from sub-nanosecond laser pulse accelerating deuterons on target front side
Author(s) -
D. Klír,
J. Krása,
J. Cikhardt,
R. Dudžák,
E. Krouský,
M. Pfeifer,
K. Řezáč,
O. Sila,
J. Skála,
J. Ullschmied,
A. Velyhan
Publication year - 2015
Publication title -
physics of plasmas
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.75
H-Index - 160
eISSN - 1089-7674
pISSN - 1070-664X
DOI - 10.1063/1.4931460
Subject(s) - neutron , deuterium , physics , neutron source , nuclear physics , neutron emission , neutron flux , nanosecond , laser , neutron temperature , atomic physics , optics
Neutron-producing experiments have been carried out on the Prague Asterix Laser System. At the fundamental wavelength of 1.315 μm, the laser pulse of a 600 J energy and 300 ps duration was focused on a thick deuterated-polyethylene target. Neutron yields reached (4.1 ± 0.8) × 108 at the peak intensity of ≈3 × 1016 W/cm2. A more detailed analysis of neutron time-of-flight signals showed that a significant fraction of neutron yields was produced both by the 2H(d,n)3He reaction and by other neutron-producing reactions. Neutron energies together with delayed neutron and gamma emission showed that MeV deuterons escaped from a laser-produced plasma and interacted ≈50 ns later with a borosilicate blast-shield glass. In order to increase DD neutron yields and to characterize deuteron beams via nuclear reactions, a secondary deuterated polyethylene target was used in a pitcher-catcher scheme at the target front side. In this experimental arrangement, the neutron yield reached (2.0 ± 0.5) × 109 with the peak neutro...
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