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* Leapfrog diffusion is similar to edge diffusion, but where the diffusing atom actually moves atop the cluster before settling in a different location from its starting position.
Edge diffusion decreases rapidly with potential for both (100) and (111) surfaces.
While all these processes show some degree of dependence on the potential, the step-edge barrier and the edge diffusion processes are the most sensitive.
* Edge diffusion involves movement of adatoms or vacancies at edge or kink sites.
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To enable smoothing parallel to edges, Weickert [30] proposed edge enhancing diffusion by constructing the diffusion tensor based on an orientation estimate obtained from observing the image at a larger scale: (9).
Possible origins of this difference include higher cluster edge atom diffusion rates for Pt in the first monolayer (ML) and/or small cluster mobilities as in the model investigated by Meakin [Phys. Rev. Lett. 51 (1983) 1119.].
In addition, because the level set filter not only preserves edges but also enhances edges by inhibiting diffusion across edges and allowing diffusion on either side of edge.
edge-enhancing diffusion.
These cavities at the outer edges suggest diffusion control.
However, the proposed SFABD scheme exhibits the best edge-enhancing diffusion behaviour.
The 800 °C sample showed uniform attack, suggesting reaction control of the oxidation process; whereas the 1100 °C sample showed attack at the edges, suggesting diffusion control of the oxidation process.
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