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- W2333075658 abstract "Many natural and industrial processes rely on constrained transport, such as proteins moving through cells, particles confined in nanocomposite materials or gels, individuals in highly dense collec- tives and vehicular traffic conditions. These are examples of motion through crowded environments, in which the host matrix may retain some glass-like dynamics. Here we investigate constrained transport in a colloidal model system, in which dilute small spheres move in a slowly rearranging, glassy matrix of large spheres. Using confocal differential dynamic microscopy and simulations, we discover a critical size asymmetry at which anomalous collective transport of the small particles appears, manifested as a logarithmic decay of the density autocorrelation functions. We demonstrate that the matrix mobility is central for the observed anomalous behaviour. These results, crucially depending on size-induced dynamic asymmetry, are of relevance for a wide range of phenomena ranging from glassy systems to cell biology." @default.
- W2333075658 created "2016-06-24" @default.
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- W2333075658 date "2016-04-04" @default.
- W2333075658 modified "2023-09-29" @default.
- W2333075658 title "Anomalous dynamics of intruders in a crowded environment of mobile obstacles" @default.
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- W2333075658 doi "https://doi.org/10.1038/ncomms11133" @default.
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