Potential of radioluminescent silica-based optical fibers for 14 MeV neutron beam monitoring
Rattachement africain : fr, it. Niveau de preuve : code pays fourni par la source.
Le résumé fourni par la source
The present paper proposes a solution for 14 MeV neutron beam monitoring employing Ce-doped optical fibers, based on the radiation-induced luminescence (RIL) phenomenon. Context is given on the possible use of these fiber-based monitors in fusion experiments, exploiting the advantages of optical fibers and of the proposed setup to overcome the limitations given by the harsh environments of fusion-related facilities. Here, the advantages of optical fibers (size, weight, electromagnetic immunity, among others) are complemented by the possibility of a very simple single-ended setup, which can be operated remotely, avoiding the exposure of the detectors to radiation. Two 2-cm long Ce-optical fibers were tested, one pristine and one that was X-ray pre-irradiated at 250 kGy(SiO 2 ). The investigated optical fibers have been characterized at the Frascati Neutron Generator (FNG) of ENEA (Italy) under 14 MeV neutrons and a flux varying between 4 × 10 7 and 4.5 × 10 8 n cm −2 s −1 . Two runs have been performed, a first one to calibrate the RIL response to the neutron flux, via a linear fit between the facility monitors and the optical fiber response. A second run was then performed to validate the calculated sensitivity. The positive effect of pre-irradiation is demonstrated by a clear improvement in RIL response. The final results show a maximum deviation in the fluence measurements from the alpha counter of the facility of 6 % for the pristine fiber and 4 % for the pre-irradiated one, both values are lower than the 7 % deviation between the alpha counter and the fission chamber of the FNG facility
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Le contrôle bibliographique ouvert
DOI retrouvé dans Crossref DOI retrouvé ; titre concordant.
- Titre Crossref
- Potential of radioluminescent silica-based optical fibers for 14 MeV neutron beam monitoring
- Date Crossref
- 01/05/2025
- Éditeur
- Elsevier BV
- Type
- journal-article
Ce recoupement confirme des métadonnées liées au DOI. Il ne confirme ni la méthode ni les conclusions de l’étude, et il ne compte pas comme une seconde source scientifique indépendante.
Les institutions déclarées
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