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Collective and tracer diffusion kinetics in the ternary random alloy

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posted on 2025-05-09, 05:53 authored by Irina BelovaIrina Belova, A. R. Allnatt, Graeme MurchGraeme Murch
In this study, collective and tracer diffusion kinetics is addressed for the ternary random alloy. A formal solution from the self-consistent theory of Moleko et al (Moleko L K, Allnatt A R and Allnatt E L 1989 Phil. Mag. A 59 141) is derived for collective diffusion and compared with the corresponding solution for the binary random alloy. Tracer diffusion in the ternary alloy is treated from the perspective of a special case of the quaternary random alloy. Results from Monte Carlo calculations for tracer and collective correlation factors (for the bcc ternary random alloy) are found to be in excellent agreement with this self-consistent theory but in only semi-quantitative agreement with the earlier theory of Manning (Manning J R 1971 Phys. Rev. B 4 1111).

History

Journal title

Journal of Physics: Condensed Matter

Volume

14

Issue

28

Pagination

6897-6907

Publisher

Institute of Physics (IOP) Publishing

Language

  • en, English

College/Research Centre

Faculty of Engineering and Built Environment

School

School of Engineering

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