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Activity-controlled clogging and unclogging of microchannels

Academic Article
Publication Date:
2020
abstract:
We propose a mechanism to control the formation of stable obstructions in two-dimensional microchannels of variable sections taking advantage of the peculiar clustering property of active systems. Under the activation of the self-propulsion by external stimuli, the system behaves as a switch according to the following principle: by turning-on the self-propulsion the particles become active and even at very low densities stick to the walls and form growing layers eventually blocking the channel bottleneck, while the obstruction dissolves when the self-propulsion is turned off. We construct the phase diagram distinguishing clogged and open states in terms of density and bottleneck width. The study of the average clogging time, as a function of density and bottleneck width, reveals the marked efficiency of the active clogging that swiftly responds to the self-propulsion turning on. The resulting picture shows a profound difference with respect to the clogging obtained through the slow diffusive dynamics of attractive passive Brownian disks. This numerical work suggests a novel method to use particles with externally tunable self-propulsion to create or destroy plugs in microchannels.
Iris type:
01.01 Articolo in rivista
Keywords:
active matter; statistical mechanics
List of contributors:
MARINI BETTOLO MARCONI, Umberto; Maggi, Claudio; Cecconi, Fabio
Authors of the University:
CECCONI FABIO
MAGGI CLAUDIO
Handle:
https://iris.cnr.it/handle/20.500.14243/423271
Published in:
PHYSICAL REVIEW RESEARCH
Journal
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