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- W2044011127 abstract "While the theory of diffusion of a single Brownian particle in confined geometries is well-established by now, we discuss here the theoretical framework necessary to generalize the theory of diffusion to dense suspensions of strongly interacting Brownian particles. Dynamical density functional theory (DDFT) for classical Brownian particles represents an ideal tool for this purpose. After outlining the basic ingredients to DDFT we show that it can be readily applied to flowing suspensions with time-dependent particle sources. Particle interactions lead to considerable layering in the mean density profiles, a feature that is absent in the trivial case of noninteracting, freely diffusing particles. If the particle injection rate varies periodically in time with a suitable frequency, a resonance in the layering of the mean particle density profile is predicted." @default.
- W2044011127 created "2016-06-24" @default.
- W2044011127 creator A5028221319 @default.
- W2044011127 creator A5066151002 @default.
- W2044011127 date "2014-12-01" @default.
- W2044011127 modified "2023-10-13" @default.
- W2044011127 title "Dynamical density functional theory for the diffusion of injected Brownian particles" @default.
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- W2044011127 doi "https://doi.org/10.1140/epjst/e2014-02322-8" @default.
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