No CrossRef data available.
Article contents
The Interaction of an Atom with a Surface: A Model Based on Effective Medium Theory
Published online by Cambridge University Press: 28 February 2011
Abstract
The interaction potential between an atom and a surface is constructed using the “effective medium theory” (EMT) for the repulsive part of the interaction, and the damped dipole-dipole and dipole-quadrupole Van der Waals terms for the attractive part. This model is then applied to the following systems: He/MgO, LiF, NaCl, Ag and Cu.
- Type
- Research Article
- Information
- Copyright
- Copyright © Materials Research Society 1989
References
2.
Ihm, G., Cole, M. W., Toigo, F. and Scoles, G., J. Chem. Phys., 87, 3995 (1987).CrossRefGoogle Scholar
3.
Engel, T. and Rieder, K. H., in: Springer Traits in Modern Physics, Vol.91 (Springer, Berlin, 1982) p. 55; J. A. Barker and D. J. Auerbauch, Surf. Sci. Rept., 4 (1984)14.Google Scholar
4. See articles in: Ordering in Two Dimensions, ed. Sinha, S. K. (North Holland, 1980).Google Scholar
5.
Hoinkes, H., Rev. Mod. Phys.
52, 933 (1980) and refs. cited there. See papers in: Gas-Surface Interactions and Physisorption. Surf. Sci., 148 (1984).Google Scholar
6.
Norskov, J. K., Phys. Rev.
B26, 2875 (1982); N. D. Lang and J. K. Norskov, Phys. Rev., B27, 4612 (1983).Google Scholar
7.
Manninen, M., Norskov, J. K., Puska, M. J. and Umrigar, C., Phys. Rev., B29, 2314 (1984).Google Scholar
9.
Karimi, M. and Vidali, G., Phys. Rev.
B38, 7759 (1988); M. Karimi, G. Vidali, Surf. Sci., (in Press).Google Scholar
11.
Karimi, M. and Vidali, G., Phys. Rev. B (in Press); M. Karimi and G. Vidali in: Diffusion at Interfaces: Microscopic Concepts, Eds. M. Grunze, H. J. Kreuzer, J. J. Weimer, Springer Series in Surface Science V. 12, p. 43 (1988).Google Scholar
12.
Frigo, A., Toigo, F., Cole, M. W. and Goodman, F. O., Phys. Rev., B33, 4184 (1986).CrossRefGoogle Scholar
14.
Eichenauer, D., Harten, U., Toennies, J. P. and Celli, V., J. Chem. Phys., 86, 3693 (1987).Google Scholar
15.
Takada, Y. and Kohn, W., Phys. Rev. Lett., 54, 470 (1985); 55, 141 (1985).CrossRefGoogle Scholar
18.
Celli, V., Eichenauer, D., Kaufhold, A. and Toennies, J. P., J. Chem. Phys.
83, 2504 (1985); D. Eichenauer and J. P. Toennies, Surf. Sci. 197, 267 (1988).Google Scholar
19.
Hutson, J. M. and Fowler, P. W., Surf. Sci.
173, 337 (1986); F. Goodman, O., Vargar, M. C., Surf. Sci. 176, 619 (1986).CrossRefGoogle Scholar
20.
Derry, G., Wesner, D., Krishnaswamy, S. V. and Frank, D. R.., Surf. Sci., 74, 245 (1978).Google Scholar
21.
Leung, W. J., Larese, J. Z. and Frankl, D. R., Surf. Sci.
136, 649 (1984) and 143, L398 (1984).Google Scholar
22.
Sullivan, S., Migone, A. D. and Vilches, O. E., Surf. Sci., 162, 461 (1985).CrossRefGoogle Scholar
25.
Luntz, A., Mattera, L., Rocca, M., Tommasini, F. and Valbusa, U., Surf. Sci.
120, L447 (1982).Google Scholar