Simulation of defects in fusion plasma first wall materials

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Abstract

Numerical calculations of radiation damages in beryllium, alpha-iron and tungsten irradiated by fusion neutrons were performed using molecular dynamics (MD) simulations. The displacement cascades efficiency has been calculated using the Norgett-Robinson-Torrens (NRT) formula, the universal pair-potential of Ziegler-Biersack-Littmark (ZBL) and the EAM inter-atomic potential. The pair potential overestimates the defects production by a factor of 2. The ZBL pair potential results and the EAM are comparable at higher primary knock-on atom (PKA) energies (E > 100 keV). We found that the most common types of defects are single vacancies, di-vacancies, interstitials and small number of interstitial clusters. On the bases of calculated results, the behavior of vacancies, empty nano-voids and nano-voids with hydrogen and helium were discussed. © Published under licence by IOP Publishing Ltd.

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Troev, T., Nankov, N., & Yoshiie, T. (2014). Simulation of defects in fusion plasma first wall materials. In Journal of Physics: Conference Series (Vol. 516). Institute of Physics Publishing. https://doi.org/10.1088/1742-6596/516/1/012022

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