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Domain coarsening in a two-dimensional binary mixture: Growth dynamics and spatial correlations
Late-stage coarsening in a 2D binary mixture has been investigated via direct imaging of "bubble" domains in an amphiphilic monolayer at an air-water interface. In a regime with growth exponent n≃0.28 for the mean domain radius, the radius distribution exhibits dynamic scaling, closely app...
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Published in: | Physical review letters 1994-10, Vol.73 (17), p.2284-2287 |
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description | Late-stage coarsening in a 2D binary mixture has been investigated via direct imaging of "bubble" domains in an amphiphilic monolayer at an air-water interface. In a regime with growth exponent n≃0.28 for the mean domain radius, the radius distribution exhibits dynamic scaling, closely approaching a Gaussian shape. The local structure of disordered bubble patterns ensures short-range screening of topological charge. Pattern statistics correspond to equilibrated random Voronoi lattices and indicate a prominent role of entropy maximization. Pattern stabilization against bubble coalescence is attributed to electrostatic interactions. |
doi_str_mv | 10.1103/physrevlett.73.2284 |
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subjects | BINARY MIXTURES BUBBLE GROWTH CLASSICAL AND QUANTUM MECHANICS, GENERAL PHYSICS COALESCENCE Condensed Matter CORRELATIONS DISPERSIONS ENTROPY MIXTURES PHYSICAL PROPERTIES Physics SCALING Soft Condensed Matter Statistical Mechanics THERMODYNAMIC PROPERTIES 661300 -- Other Aspects of Physical Science-- (1992-) TWO-DIMENSIONAL CALCULATIONS |
title | Domain coarsening in a two-dimensional binary mixture: Growth dynamics and spatial correlations |
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