Si(L₂,3VV) and Cu(M₂,3VV) Auger intensities from the Cu/Si(111)-7×{}7 interface have been measured in a polar-angle-resolved fashion for various Cu thicknesses. A simple theory of polar-angle-resolved Auger emission has been developed and used to extract atom-number densities for both Si and Cu as a function of depth. It is found that significant Si outdiffusion is triggered at 300 K by Cu coverage in excess of 2 A{} with characteristic diffusion lengths for Si of {~}35% of the overlayer thickness. Cu diffusion into the substrate, if it occurs at all, is limited to characteristic penetration depths of 1 to 2 A{} for all coverages. The increased extent of Si outdiffusion above 2 A{} is accompanied by substantial changes in Cu distribution throughout the interfacial region; at 2 A{}, the Cu density increases sharply from interface boundary to surface whereas above 2 A{}, the Cu density is constant throughout the interface.
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Chambers et al. (1985) studied this question.
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