Author:
Michalopoulou V.,Axiotis M.,Chasapoglou S.,Eleme Z.,Gkatis G.,Kalamara A.,Kokkoris M.,Lagoyannis A.,Patronis N.,Stamatopoulos A.,Tsantiri A.,Vlastou R.
Abstract
AbstractThe fission cross section of $$^{232}$$
232
Th has been measured at fast neutron energies, using a setup based on Micromegas detectors. The experiment was performed at the 5.5 MV Van de Graaff Tandem accelerator in the neutron beam facility of the National Centre for Scientific Research “Demokritos”. The quasi-monoenergetic neutron beams were produced via the $$^{3}$$
3
H(p,n), $$^{2}$$
2
H(d,n) and $$^{3}$$
3
H(d,n) reactions, while the $$^{238}$$
238
U(n,f) and $$^{235}$$
235
U(n,f) reactions were used as references, in order to acquire cross-section data points in the energy range 2–18 MeV. The characterization of the actinide samples was performed via $$\alpha $$
α
-spectroscopy with a Silicon Surface Barrier (SSB) detector, while Monte Carlo simulations with the FLUKA code were used to achieve the deconvolution of the $$^{232}$$
232
Th $$\alpha $$
α
peak from the $$\alpha $$
α
background of its daughter nuclei present in the spectrum. Special attention was given to the study of the parasitic neutrons present in the experimental area, produced via charged particle reactions induced by the particle beam and from neutron scattering. Details on the data analysis and results are presented.
Funder
CALIBRA/EYIE
IKY scholarships program co-financed by the European Union
Publisher
Springer Science and Business Media LLC
Subject
Nuclear and High Energy Physics
Reference42 articles.
1. D. Greneche, M. Chhor, in Development of the thorium fuel cycle. ed. by I. Crossland (Woodhead Publishing, Sawston, 2012), p. 177
2. International Atomic Energy Agency (IAEA), Thorium fuel cycle – Potential benefits and challenges. (IAEA-TECDOC-1450, 2005), https://www-pub.iaea.org/MTCD/Publications/PDF/TE_1450_web.pdf. Accessed 19 Jul 2021
3. P. Möller, J. Nix, Calculation of Fission Barriers, (Proceedings of the Third IAEA Symposium on the Physics and Chemistry of Fission) (Rochester, New York, 1974), p. 103
4. M. Sin, R. Capote, A. Ventura, M. Herman, P. Obložinsky, Phys. Rev. C 74, 014608 (2006). https://doi.org/10.1103/PhysRevC.74.014608
5. V.V. Zerkin, B. Pritychenko, Nucl. Instrum. Methods A 888(31), 10 (2018)
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