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Structural and Magnetic Characterization of Rare Earth and Transition Metal Films Grown on Epitaxial Buffer Films on Semiconductor

Published online by Cambridge University Press:  03 September 2012

R. F. C. Farrow
Affiliation:
IBM Research Division, Almaden Research Center, 650 Harry Road, San Jose , Ca 95120-6099
S. S. P. Parkin
Affiliation:
IBM Research Division, Almaden Research Center, 650 Harry Road, San Jose , Ca 95120-6099
V. S. Speriosu
Affiliation:
IBM Research Division, Almaden Research Center, 650 Harry Road, San Jose , Ca 95120-6099
A. Bezinge
Affiliation:
IBM Research Division, Almaden Research Center, 650 Harry Road, San Jose , Ca 95120-6099
A. P. Segmuller
Affiliation:
IBM Research Division, T.J. Watson Research Center, Yorktown Heights , NY 10598.
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Abstract

Structural and magnetic data are presented and discussed for epitaxial films of rare earth metals ( Dy, Ho, Er) on LaF3 films on the GaAs(TTT) surface and Fe on Ag films on the GaAs(001) surface. Both systems exhibit unusual structural characteristics which influence the magnetic properties of the metal films. In the case of rare earth epitaxy on LaF3 we present evidence for epitaxy across an incommensurate or discommensurate interface. Coherency strain is not transmitted into the metal which behaves much like bulk crystals of the rare earths. In the case of Fe films , tilted epitaxy and long-range coherency strain are confirmed by X-ray diffractometry. Methods of controlling some of these structural effects by modifying the epitaxial structures are presented.

Type
Research Article
Copyright
Copyright © Materials Research Society 1989

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References

REFERENCES

1. Farrow, R.F.C., Parkin, S.S.P., Speriosu, V.S., J.Appl. Phys. 64, 5315 (1988).Google Scholar
2. Gibson, J.M. and Phillips, J.M., Appl.Phys. Lett. 43, 828 (1983).Google Scholar
3. Segmuller, A., Noyan, I., Speriosu, V.S., Progress in Crystal Growth, (1988).Google Scholar
4. Gregson, D., Catlow, C.R.A., Chadwick, A. V, Lander, G.H., Cormack, A.N., Fender, B.E., Acta. Cryst. B 39, 687 (1983).Google Scholar
5. Farrow, R.F.C., Parkin, S.S.P., Lang, M., Roche, K.P., Mat. Res.Soc. Symp. Proc. 103, 205, (1988).Google Scholar
6. Coqblin, B., THE ELECTRONIC STRUCTURE OF RARE-EARTH METALS AND ALLOYS: THE MAGNETIC HEAVY RARE EARTHS, Academic Press, 1977.Google Scholar
7. Bennett, W., Farrow, R.F.C., Parkin, S.S. P, Speriosu, V.S., Segmuller, A., Paper presented at MRS Spring Meeting , 1989. Symposium G. Mat.Res.Soc.Symp. Proc.151 (1989).Google Scholar
8. Farrow, R.F.C., Speriosu, V.S.S., Parkin, S.S.P., Chien, J., Bravman, J.C.,Marks, R.F., Kirchner, P.D., Mat. Res. Soc. Symp. Prcc. 130, (1989).Google Scholar
9. Schowalter, L.J., Hall, E.L., Lewis, N., Hashimoto, S., Mat. Res. Soc. Symp. Proc., 130, (1989).Google Scholar
10. Kwo, J. in THIN FILM GROWTH TECHNIQUES FOR LOW DIMENSIONAL STRUCTURES, NATO ASI Series B: Physics, Vol.163, Edited by Farrow, R.F.C., Parkin, S.S.P., Dobson, P.J. , Neave, J.H., Arrott, A.S.. Plenum Press , New York (1987).Google Scholar
11. Borchers, J., Salamon, M.B., Du, R. , Flynn, C.P., Erwin, R.W., Rhyne, J.J., Superlattices and Microstructures, 4, 439, (1988).Google Scholar
12. Farrow, R.F.C., Parkin, S.S.P., Beyers, R.B., Lang, M., Speriosu, V., Pitner, P., Woodall, J.M., Wright, S.L., Kirchner, P.D., Pettit, G.D.., Mat. Res. Soc. Symp. Proc. 102, 483 (1988).CrossRefGoogle Scholar