The trapping of potassium atoms by a polycrystalline tungsten surface as a function of energy and angle of incidence |
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Authors: | A. Hurkmans E.G. Overbosch D.R. Olander J. Los |
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Affiliation: | FOM-Instituut voor Atoom- en Molecuulfysica, Kruislaan 407, AmsterdamlWgm., The Netherlands |
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Abstract: | The trapping probability of potassium atoms on a polycrystalline tungsten surface has been measured as a function of the angle of incidence and as a function of the energy of the incoming atoms. Below an energy of 1 eV the trapping was complete; above 20 eV only reflection occurred. The trapping probability increased with increasing angle of incidence. The measurements are compared with a simple model of the fraction of atoms initially trapped. The model, a one-dimensional cube model including a Boltzmann distribution of the velocities of oscillating surface atoms, partially explains the data. The trapping probability as a function of incoming energy is well described for normal incidence, justifying the inclusion of thermal motion of the surface atoms in the model. The angular dependence can be explained in a qualitative way, although there is a substantial discrepancy for large angles of incidence, showing the presence of surface structure. |
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