Publication | Closed Access
Coarsening Mechanisms in a Metal Film: From Cluster Diffusion to Vacancy Ripening
190
Citations
14
References
1996
Year
EngineeringSevere Plastic DeformationNanoclusterCluster DiffusionVacancy ClustersAg FilmsThin Film ProcessingMaterials ScienceCluster ScienceMetal FilmPhysicsNanotechnologyMetallurgical InteractionMicrostructureVacancy RipeningMaterial AnalysisOstwald RipeningSurface ScienceApplied PhysicsInterfacial StudyThin Films
Coarsening of Ag films on Ag(100) at room temperature occurs primarily via diffusion-mediated coalescence of two-dimensional adatom clusters, rather than by Ostwald ripening, up to a coverage of 0.65 monolayer. Above 0.8 monolayer, vacancy clusters coarsen primarily via Ostwald ripening, due to their much lower diffusivity. An asymmetric transition region separates these two regimes, characterized by a near-percolating structure which undergoes self-similar coarsening.
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