Single-file diffusion and kinetics of template assisted assembly of colloids
arXiv:1109.4801 · doi:10.1103/PhysRevE.85.020402
Abstract
We report computer simulation studies of the kinetics of ordering of a two dimensional system of particles on a template with a one dimensional periodic pattern. In equilibrium one obtains a re-entrant liquid-solid-liquid phase transition as the strength of the substrate potential is varied. We show that domains of crystalline order grow as , with with a possible cross-over to at late times. We argue that the law originates from {\em single-file} motion and annihilation of defect pairs of opposite topological charge along channels created by the template.
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