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Residual Nuclide Production from Iron, Lead, and Uranium by Neutron-Induced Reactions up to 180 MeV

Within the HINDAS project, activation experiments with quasi mono-energetic neutrons were performed at UCL and TSL. Cross sections for the production of residual radionuclides were derived from the measured activities by unfolding, based on the neutron spectra inside the target stacks and starting f...

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Main Authors: Michel, R, Glasser, W, Herpers, U, Schuhmacher, H, Brede, H J, Dangendorf, V, Nolte, R, Malmborg, P, Prokofiev, A V, Smirnov, A N, Rishkov, I, Kollar, D, Meulders, J P, Duijvestijn, M, Koning, A
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creator Michel, R
Glasser, W
Herpers, U
Schuhmacher, H
Brede, H J
Dangendorf, V
Nolte, R
Malmborg, P
Prokofiev, A V
Smirnov, A N
Rishkov, I
Kollar, D
Meulders, J P
Duijvestijn, M
Koning, A
description Within the HINDAS project, activation experiments with quasi mono-energetic neutrons were performed at UCL and TSL. Cross sections for the production of residual radionuclides were derived from the measured activities by unfolding, based on the neutron spectra inside the target stacks and starting from 'guess' excitation functions. Exemplary results are presented and are compared with theoretical calculations using the TALYS code.
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source American Institute of Physics:Jisc Collections:Transitional Journals Agreement 2021-23 (Reading list)
subjects EXCITATION FUNCTIONS
IRON
LEAD
MEV RANGE
NEUTRON REACTIONS
NEUTRON SPECTRA
NEUTRONS
NUCLEAR PHYSICS AND RADIATION PHYSICS
RADIOISOTOPES
THERMOLUMINESCENCE
URANIUM
title Residual Nuclide Production from Iron, Lead, and Uranium by Neutron-Induced Reactions up to 180 MeV
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