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  5. High deuteron and neutron yields from the interaction of a petawatt laser with a cryogenic deuterium jet
 
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2023
Zweitveröffentlichung
Artikel
Verlagsversion

High deuteron and neutron yields from the interaction of a petawatt laser with a cryogenic deuterium jet

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Hauptpublikation
fphy-10-964696.pdf
CC BY 4.0 International
Format: Adobe PDF
Size: 1.63 MB
TUDa URI
tuda/9938
URN
urn:nbn:de:tuda-tuprints-231239
DOI
10.26083/tuprints-00023123
Autor:innen
Jiao, X.
Curry, C. B.
Gauthier, M.
Chou, H.-G. J.
Fiuza, F.
Kim, J. B.
Phan, D. D.
McCary, E.
Galtier, E. C.
Dyer, G. M.
Ofori-Okai, B. K.
Labun, L.
Labun, O. Z.
Schoenwaelder, C.
Roycroft, R.
Tiwari, G.
Glenn, G. D.
Treffert, F.
Glenzer, S. H.
Hegelich, B. M.
Kurzbeschreibung (Abstract)

A compact high-flux, short-pulse neutron source would have applications from nuclear astrophysics to cancer therapy. Laser-driven neutron sources can achieve fluxes much higher than spallation and reactor neutron sources by reducing the volume and time in which the neutron-producing reactions occur by orders of magnitude. We report progress towards an efficient laser-driven neutron source in experiments with a cryogenic deuterium jet on the Texas Petawatt laser. Neutrons were produced both by laser-accelerated multi-MeV deuterons colliding with Be and mixed metallic catchers and by d (d,n)³He fusion reactions within the jet. We observed deuteron yields of 10¹³/shot in quasi-Maxwellian distributions carrying ∼ 8 − 10 % of the input laser energy. We obtained neutron yields greater than 10¹⁰/shot and found indications of a deuteron-deuteron fusion neutron source with high peak flux (> 10²² cm⁻² s⁻¹). The estimated fusion neutron yield in our experiment is one order of magnitude higher than any previous laser-induced dd fusion reaction. Though many technical challenges will have to be overcome to convert this proof-of-principle experiment into a consistent ultra-high flux neutron source, the neutron fluxes achieved here suggest laser-driven neutron sources can support laboratory study of the rapid neutron-capture process, which is otherwise thought to occur only in astrophysical sites such as core-collapse supernova, and binary neutron star mergers.

Freie Schlagworte

laser-driven neutron ...

high-flux neutron sou...

rapid neutron capture...

laboratory astro-nucl...

laser-driven fusion

laser-driven ion sour...

Sprache
Englisch
Fachbereich/-gebiet
05 Fachbereich Physik > Institut für Kernphysik
DDC
500 Naturwissenschaften und Mathematik > 530 Physik
Institution
Universitäts- und Landesbibliothek Darmstadt
Ort
Darmstadt
Titel der Zeitschrift / Schriftenreihe
Frontiers in Physics
Jahrgang der Zeitschrift
10
ISSN
2296-424X
Verlag
Frontiers Media S.A.
Publikationsjahr der Erstveröffentlichung
2023
Verlags-DOI
10.3389/fphy.2022.964696
PPN
504214489

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