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Nucleus

Print version ISSN 0864-084X

Abstract

LEYVA FABELO, Antonio et al. Monte Carlo calculation of carbon atom displacement damage in C60 fullerene bulk materials irradiated with gamma rays . Nucleus [online]. 2012, n.51, pp. 20-25. ISSN 0864-084X.

The displacement per carbon atom cross-sections behaviors with the secondary electron and positron kinetic energy for spherical fullerene C60 molecules are calculated. To accomplish this, the McKinley-Feshbach approach and the Kinchin-Pease approximation were taking into account, using two different displacement threshold energies. The total displacements per atom number generated indirectly by the photons in bulk samples composed of C60 fullerenes is also calculated. Besides, the behaviors of secondary particles contributions with the used displacement threshold energies and incident photon energies are determined. The in-depth distribution of electron and positron contributions and their relationship with the total displacements number are presented and debated. It was found that the positrons contribution to the total atom displacements number is very significant in processes involving the interaction of gamma quanta with energy up to 100 MeV in C60 fullerenes bulk samples.

Keywords : fullerenes; atomic displacements; cross sections; radiation effects; Monte Carlo method; gamma radiation.

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