Optimum target source term estimation for high energy electron accelerators
Autor: | R.V. Nandedkar, Tapas Bandyopadhyay, T K Sahu, P.R. Hannurkar, M. K. Nayak, Haridas G. Nair, Rupal Tripathi |
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Rok vydání: | 2016 |
Předmět: |
Physics
Work (thermodynamics) Radiation 010308 nuclear & particles physics Bremsstrahlung Electron 01 natural sciences 030218 nuclear medicine & medical imaging Power (physics) Term (time) Computational physics 03 medical and health sciences 0302 clinical medicine Yield (chemistry) 0103 physical sciences Cathode ray Atomic number Atomic physics |
Zdroj: | Radiation Physics and Chemistry. 122:77-81 |
ISSN: | 0969-806X |
DOI: | 10.1016/j.radphyschem.2016.01.026 |
Popis: | Optimum target for bremsstrahlung emission is defined as the thickness of the target material, which produces maximum bremsstrahlung yield, on interaction of electron with the target. The bremsstrahlung dose rate per unit electron beam power at a distance of 1 m from the target material gives the optimum target source term. In the present work, simulations were performed for three different electron energies, 450, 1000 and 2500 MeV using EGSnrc Monte-Carlo code to determine the optimum thickness. An empirical relation for optimum target as a function of electron energy and atomic number of the target materials is found out from results. Using the simulated optimum target thickness, experiments are conducted to determine the optimum target source term. For the experimental determination, two available electron energies, 450 MeV and 550 MeV from booster synchrotron of Indus facility is used. The optimum target source term for these two energies are also simulated. The experimental and simulated source term are found to be in very good agreement within ±3%. Based on the agreement of the simulated source term with the experimental source term at 450 MeV and 550 MeV, the same simulation methodology is used to simulate optimum target source term up to 2500 MeV. The paper describes the simulations and experiments carried out on optimum target bremsstrahlung source term and the results obtained. |
Databáze: | OpenAIRE |
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