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The Interactions Between Misfit Dislocations in InGaAs/GaAs Interfaces.

Published online by Cambridge University Press:  22 February 2011

Philip Kightley
Affiliation:
Department of Materials Science and Engineering, University of Liverpool, PO Box 147, Liverpool, England, L69 3BX.
Peter J Goodhew
Affiliation:
Department of Materials Science and Engineering, University of Liverpool, PO Box 147, Liverpool, England, L69 3BX.
Richard Beanland
Affiliation:
Department of Materials Science and Engineering, University of Liverpool, PO Box 147, Liverpool, England, L69 3BX.
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Abstract

The reactions between misfit dislocations arriving by glide at the interface between an In0.12Ga0.88As/GaAs multilayer and a GaAs substrate are analysed and reported. The glide forces for the (a/2)<110> dislocations are calculated as a function of vicinal tilt from (001) to (100). It is observed that the 4% changes in the magnitude of the force for a 2° vicinal angle are not sufficient to significantly alter the relative linear densities of the different types of dislocation.

Type
Research Article
Copyright
Copyright © Materials Research Society 1992

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References

REFERENCES

1 Beanland, R, PhD Thesis, University of Liverpool, England (1991).Google Scholar
2 Mazzer, M, Camera, A, Drigo, A V and Ferrari, C, J. Appl. Phys. 68 531 (1990).CrossRefGoogle Scholar
3 Kightley, P, PhD Thesis, University of Liverpool, England (1991).Google Scholar
4 Hornstra, J and Bartels, W J, J. Cryst. Growth 44 513 (1978).Google Scholar
5 Nabarro, F R N, ‘Theory of Crystal Dislocations’, Oxford University Press, London (1967).Google Scholar
6 Kightley, P, Goodhew, P J, Bradley, R R and Augustus, P D, J. Cryst. Growth 112 359 (1991).Google Scholar
7 Kightley, P and Goodhew, P J, Proc. MSM VII, Oxford 1991, accepted for publication.Google Scholar
8 Lefevbre, A, Herbeaux, C and Di Persio, J, Phil. Mag. A63 471 (1991).Google Scholar
9 Chang, K H, Bhattacharya, P K and Gibala, R, J. Appl. Phys. 66 2993 (1989).Google Scholar
10 Frank, F.C., ‘Report of the Symposium on the Plastic Deformation of Crystalline Solids’, Carnegie Institute of Technology, Pittsburgh, pL50 (1950).Google Scholar
Bilby, B A, ‘Report on the Conference on Defects in Crystalline Solids’, Physical Society, London, pL24 (1955).Google Scholar
11 Beanland, R and Kightley, P, Proc. MSM VII, Oxford 1991, accepted for publication.Google Scholar