15–19 Oct 2012
Vietri sul Mare
Europe/Rome timezone

Neutron dosimetry by means of Electron Spin Resonance (ESR) technique

18 Oct 2012, 14:15
15m
Hall "E" (Vietri sul Mare)

Hall "E"

Vietri sul Mare

oral (travel award) Biological and Physical Dosimetry Awardees 2

Speaker

Dr Maurizio Marrale (Department of Physics University of Palermo)

Description

Along with the Neutron Capture Therapy (NCT) development and with the use of thermal neutrons for radiotherapeutic purposes, many efforts have been devoted to the beam characterization in order to optimize the therapy procedures. Reliable dosimetric measurements should be able to determine the various components (neutronic and photonic) of the mixed beam usually employed for therapy. We have studied the effect of the additive such as gadolinium and 10B-boric acid on the neutron sensitivity of alanine ESR dosimeters exposed to a gamma and mixed (n, gamma) field mainly composed by thermal neutrons. We have chosen both this additive nuclei because of their very high capture cross section to thermal neutrons. Furthermore, in the nuclear reaction with thermal neutrons particle, which in turn release their energy in the neighbourhood of the reaction site, are ejected. We completed our study through a Monte Carlo simulation aimed at obtaining information about the reliability of this powerful tool in predicting the response enhancement achievable with the addition of gadolinium and 10B-boric acid in alanine dosimeters. These computational values obtained through simulation are compared with the experimental results.

Primary authors

Dr Aldo Parlato (Department of Energy University of Palermo) Dr Anna Longo (Department of Physics University of Palermo) Mr Antonio Carlino (Department of Physics University of Palermo) Dr Elio Tomarchio (Department of Energy University of Palermo) Dr Luigi Tranchina (Department of Physics University of Palermo) Prof. Maria Brai (Department of Physics University of Palermo) Dr Maurizio Marrale (Department of Physics University of Palermo) Mr Salvatore Panzeca (Department of Physics University of Palermo)

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