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- W2154578082 abstract "Using molecular-dynamics simulation, we study sputtering of a condensed-gas solid induced by the impact of atomic clusters with sizes $1ensuremath{leqslant}nensuremath{leqslant}{10}^{4}$. Above a nonlinear onset regime, we find a linear increase of the sputter yield $Y$ with the total energy $E$ of the bombarding cluster. The fitting coefficients in the linear regime depend only on the cluster size $n$ such that for fixed bombardment energy, sputtering decreases with increasing cluster size $n$. We find that to a good approximation the sputter yield in this regime obeys an additivity rule in cluster size $n$ such that doubling the cluster size at the same cluster velocity amounts to doubling the sputter yield. The sputter-limiting energy ${ϵ}_{s}$ is introduced which separates erosion $(ϵ>{ϵ}_{s})$ from growth $(ϵ<{ϵ}_{s})$ under cluster impact." @default.
- W2154578082 created "2016-06-24" @default.
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- W2154578082 date "2004-10-13" @default.
- W2154578082 modified "2023-10-16" @default.
- W2154578082 title "Linearity and additivity in cluster-induced sputtering: A molecular-dynamics study of van der Waals bonded systems" @default.
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- W2154578082 doi "https://doi.org/10.1103/physrevb.70.155404" @default.
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