Estimation of critical dislocation distancesA quantitative study beyond BCF theory

被引:0
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作者
G. Krishnamoorthy
H. Emmerich
V. Chalupecký
机构
[1] Computational Materials Engineering,Department of Mathematics
[2] Center for Computational Engineering Science,undefined
[3] Institute of Minerals Engineering,undefined
[4] RWTH Aachen University,undefined
[5] Faculty of Nuclear Science and Physical Engineering,undefined
[6] Czech Technical University in Prague,undefined
关键词
European Physical Journal Special Topic; Screw Dislocation; Liquid Phase Epitaxy; Desorption Rate; Spiral Growth;
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摘要
This paper describes in detail quantitative studies of the spiral mode of crystal growth, particularly focussing on the critical dislocation distance between two spirals rotating in opposite direction using the model derived in (Cont. Mech. Thermodynamics 17, 373 (2006)) from the classical BCF model presented in (Philos. Trans. R. Soc. London Ser. A 243, 299 (1951)). Based on our numerical studies we can show that the critical dislocation distance is a function of the diffusion coefficient and the temperature coupling constant as well as a function of the desorption rate. However, it is not a function of the flux rate.
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页码:19 / 26
页数:7
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