1980
DOI: 10.1080/00337578008209264
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Flux density equations for topographical evolution of features on ion bombarded surfaces

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Cited by 13 publications
(1 citation statement)
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“…Full description of these effects requires a complete knowledge of the spatial and energy distributions of both sputtered material and scattered ions and, unlike the case of sputtering yield data and its dependence on ion and target parameters, this information is quite incomplete. Reasonable assumptions of the magnitudes of these processes can be made and, for the case of the re-deposition effect, the redistribution of sputtered material onto neighbouring surfaces has been estimated for a variety of technologically relevant surface geometries (Smith and Tagg 1986, Belson and Wilson 1980. In principle, it is possible, using numerical methods, to evaluate the evolving surface geometry, when both the primary erosion and the accompanying re-deposition processes occur simultaneously, by determining the effective characteristics behaviour at each incremental time step.…”
Section: The Surface As a Deterministic Propagating Wavefrontmentioning
confidence: 99%
“…Full description of these effects requires a complete knowledge of the spatial and energy distributions of both sputtered material and scattered ions and, unlike the case of sputtering yield data and its dependence on ion and target parameters, this information is quite incomplete. Reasonable assumptions of the magnitudes of these processes can be made and, for the case of the re-deposition effect, the redistribution of sputtered material onto neighbouring surfaces has been estimated for a variety of technologically relevant surface geometries (Smith and Tagg 1986, Belson and Wilson 1980. In principle, it is possible, using numerical methods, to evaluate the evolving surface geometry, when both the primary erosion and the accompanying re-deposition processes occur simultaneously, by determining the effective characteristics behaviour at each incremental time step.…”
Section: The Surface As a Deterministic Propagating Wavefrontmentioning
confidence: 99%