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Resistivity recovery simulations of electron-irradiated iron: Kinetic Monte Carlo versus cluster dynamics

  • J. Dalla Torre
  • , Chu Chun Fu
  • , F. Willaime
  • , A. Barbu
  • , J. L. Bocquet
  • CEA Saclay

Résultats de recherche: Contribution à un journalArticleRevue par des pairs

Résumé

The isochronal resistivity recovery in high purity α-iron irradiated by electrons was successfully reproduced by a multiscale modelling approach. The stability and mobility of small self-defect clusters determined by ab initio methods were used as input data for an event based Kinetic Monte Carlo (KMC) model, used to explore the defect population evolution during the annealing and to extract the resistivity recovery peaks. In this paper, we investigate the possibility of using an efficient mesoscale model, the Cluster Dynamics (CD), instead of KMC in this approach. The comparison between the two methods for various CD initial conditions shows the importance of spatial correlations between defects, which are neglected in the CD model. However, using appropriate initial conditions, e.g. starting from the concentration of Frenkel pairs after the uncorrelated stage IE, the CD model captures the main characteristics of subsequent defect population evolution, and it can therefore be used for fast and semi-quantitative investigations.

langue originaleAnglais
Pages (de - à)42-49
Nombre de pages8
journalJournal of Nuclear Materials
Volume352
Numéro de publication1-3
Les DOIs
étatPublié - 30 juin 2006
Modification externeOui

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