Modeling of supersonic crowdion clusters in FCC lattice: Effect of the interatomic potential

Author:

Shelepev Igor A.1,Bayazitov Ayrat M.2,Korznikova Elena A.234

Affiliation:

1. Department of Physics, Saratov State University, 410012 Saratov, Russia

2. Institute of Molecule and Crystal Physics, Ufa Federal Research Center of Russian Academy of Sciences, 450075 Ufa, Russia

3. Ufa State Aviation Technical University, 450001 Ufa, Russia

4. Institute for Metals Superplasticity, Problems Russian Academy of Sciences, 450001 Ufa, Russia

Abstract

Among a wide variety of point defects, crowdions can be distinguished by their high energy of formation and relatively low migration barriers, which makes them an important agent of mass transfer in lattices subjected to severe plastic deformation, irradiation, etc. It was previously shown that complexes and clusters of crowdions are even more mobile than single interstitials, which opened new mechanisms for the transfer of energy and mass in materials under intense external impacts. One of the most popular and convenient methods for analyzing crowdions is molecular dynamics, where the results can strongly depend on the interatomic potential used in the study. In this work, we compare the characteristics of a crowdion in an fcc lattice obtained using two different interatomic potentials — the pairwise Morse potential and the many-body potential for Al developed by the embedded atom method. It was found that the use of the many-body potential significantly affects the dynamics of crowdion propagation, including the features of atomic collisions, the evolution of energy localization and the propagation path.

Funder

the Russian Science Foundation

Publisher

World Scientific Pub Co Pte Ltd

Subject

Polymers and Plastics,Mechanics of Materials,Atomic and Molecular Physics, and Optics,Ceramics and Composites

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