Estimation with Monte Carlo of thermal neutrons in the FANT, using 252Cf and 241Am/9Be neutron source

The thermal neutron irradiation device (FANT), developed at the Neutron Measurements Laboratory of the Energy Engineering Department at Universidad Politécnica de Madrid, is a high-density polyethylene regular parallelepiped, with a rather uniform neutron fluence inside its irradiation chamber. It u...

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Veröffentlicht in:Applied radiation and isotopes 2023-04, Vol.194, p.110694-110694, Article 110694
Hauptverfasser: Cevallos-Robalino, Lenin E., García-Fernández, Gonzalo, Gallego, Eduardo, Vega-Carrillo, Hector Rene, García-Baonza, Roberto, Barcia-Ayala, Orlando, Veliz, Bremnen
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Sprache:eng
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Zusammenfassung:The thermal neutron irradiation device (FANT), developed at the Neutron Measurements Laboratory of the Energy Engineering Department at Universidad Politécnica de Madrid, is a high-density polyethylene regular parallelepiped, with a rather uniform neutron fluence inside its irradiation chamber. It uses a Am95241/Be49 neutron source aiming to provide thermal neutron fluence rates. Neutron spectra and neutron fluences were estimated with Monte Carlo methods in the FANT irradiation chamber when a Cf98252 neutron source is used and were compared with the results obtained with the Am95241/Be49 source. Regardless of the neutron source, the largest contribution is due to thermal neutrons, producing also epithermal and fast neutrons. Per neutron emitted by the source, the use of Cf98252 produces a larger amount of neutrons. •241Am/9Be neutron source.•Neutrons sources 241Am/9Be and 252Cf are moderated and scattered in the system.•252Cf neutron source.•MCNP6.2
ISSN:0969-8043
1872-9800
DOI:10.1016/j.apradiso.2023.110694