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Phys. Rev. B 65, 205419 (2002) [20 pages]

Epitaxial growth in dislocation-free strained alloy films: Morphological and compositional instabilities

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Zhi-Feng Huang* and Rashmi C. Desai
Department of Physics, University of Toronto, Toronto, Ontario, Canada M5S 1A7

Received 29 November 2001; revised 8 March 2002; published 20 May 2002

The mechanisms of stability or instability in the strained alloy film growth are of intense current interest to both theorists and experimentalists. We consider dislocation-free, coherent, growing alloy films which could exhibit a morphological instability without nucleation. We investigate such strained films by developing a nonequilibrium continuum model and by performing a linear stability analysis. The couplings of film-substrate misfit strain, compositional stress, deposition rate, and growth temperature determine the stability of film morphology as well as the surface spinodal decomposition. We consider some realistic factors of epitaxial growth, in particular the composition dependence of elastic moduli and the coupling between the top surface and underlying bulk of the film. The interplay of these factors leads to new stability results. In addition to the stability diagrams both above and below the coherent spinodal temperature, we also calculate the kinetic critical thickness for the onset of instability as well as its scaling behavior with respect to misfit strain and deposition rate. We apply our results to some real growth systems and discuss the implications related to some recent experimental observations.

© 2002 The American Physical Society

URL:
http://link.aps.org/doi/10.1103/PhysRevB.65.205419
DOI:
10.1103/PhysRevB.65.205419
PACS:
81.15.Hi, 64.75.+g, 68.55.Jk

*Electronic address: zfh@physics.utoronto.ca

Electronic address: desai@physics.utoronto.ca; URL: http://www.physics.utoronto.ca/people/faculty/desai.html