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Calibration factor for estimating personal dose equivalent with imaging plates
Authors:D Mouhssine  A Nourreddine  A Nachab  F Fernandez  C Domingo  H Muller  K Amgarou  A Pape  D Raiser
Institution:

aInstitut de Recherches Subatomiques, UMR 7500 CNRS-IN2P3 et Université Louis Pasteur, 23 rue du Loess, BP 28, F-67037 Strasbourg Cedex 2, France

bGrup de Fisica de les Radiacions, Departament de Fisica, Universitat Autonoma de Barcelona, E-08193 Bellaterra (Barcelona), Spain

cInstitut de Radioprotection et de Sûreté Nucléaire, BP 3, 13115 Saint-Paul-les-Durance, Cadarache, France

Abstract:A personal imaging plate (IP) dosimeter is in the process of being developed for neutron fields using the BaFBr:Eu2+ phosphor. A configuration incorporating a polyethylene radiator placed before the IP detector is used to produce protons via (n,p) elastic scattering. For a dosimeter sensitive to thermal neutrons, a Nylon plate ( thick) is placed between the polyethylene (1.2 mm thick) radiator and the IP ( thick sensitive layer) detector to produce protons via the 14N(n,p)14C reaction. Dosimeters having these configurations have been exposed to neutrons from 241Am–Be and 252Cf sources at the Institute for Radioprotection and Nuclear Safety of Cadarache at angles of 0 (normal incidence), 30 and 60 and several dose equivalents. The personal dose equivalent response in terms of Hp(10) is evaluated from the net measured photostimulated luminescence densities (). The calibration factor obtained for estimating the personal dose equivalent with this dosimeter is for 241Am–Be and for 252Cf.
Keywords:Dosimetry  Fast neutrons  Imaging plates  Photostimulated luminescence
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