Abstract
Self-organized separation of charged-dust species in two-dimensional dusty plasmas is studied by means of molecular-dynamics simulation. The multispecies dust grains, interacting through a screened Coulomb potential with a long-range attractive component, are confined by an external quadratic potential and subjected to a radially outward ion drag force. It is found that, in general, the species are spatially separated by bandlike dust-free (or void) regions, and grains of the same species tend to populate a common shell. At large ion drag and/or large plasma screening, a central disklike void as well as concentric bandlike voids separating the different species appear. Because of the outward drag and the attractive component of the dust-dust interaction forces, highly asymmetrical states consisting of species-separated dust clumps can also exist despite the fact that all the forces are either radial or central. © 2006 The American Physical Society.
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CITATION STYLE
Liu, Y. H., Chen, Z. Y., Yu, M. Y., & Bogaerts, A. (2006). Multiple void formation in plasmas containing multispecies charged grains. Physical Review E - Statistical, Nonlinear, and Soft Matter Physics, 74(5). https://doi.org/10.1103/PhysRevE.74.056401
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