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Thick-foils activation technique for neutron spectrum unfolding with the MINUIT routine—Comparison with GEANT4 simulations

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Auteur
Vagena E., Theodorou K., Stoulos S.
Date
2018
Language
en
DOI
10.1016/j.nima.2018.01.025
Sujet
Cadmium
Chemical activation
Erbium
Iridium
Linear accelerators
Manganese
Neutron spectrometers
Samarium
Tungsten
Uncertainty analysis
Activation foil
GEANT simulation
LINAC
MINUIT routine
Neutron spectra
Neutrons
Elsevier B.V.
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Résumé
Neutron activation technique has been applied using a proposed set of twelve thick metal foils (Au, As, Cd, In, Ir, Er, Mn, Ni, Se, Sm, W, Zn) for off-site measurements to obtain the neutron spectrum over a wide energy range (from thermal up to a few MeV) in intense neutron-gamma mixed fields such as around medical Linacs. The unfolding procedure takes into account the activation rates measured using thirteen (n,γ) and two (n,p) reactions without imposing a guess solution-spectrum. The MINUIT minimization routine unfolds a neutron spectrum that is dominated by fast neutrons (70%) peaking at 0.3 MeV, while the thermal peak corresponds to the 15% of the total neutron fluence equal to the epithermal-resonances area. The comparison of the unfolded neutron spectrum against the simulated one with the GEANT4 Monte-Carlo code shows a reasonable agreement within the measurement uncertainties. Therefore, the proposed set of activation thick-foils could be a useful tool in order to determine low flux neutrons spectrum in intense mixed field. © 2018 Elsevier B.V.
URI
http://hdl.handle.net/11615/80323
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