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- W2128912343 abstract "The effect of shape asymmetry of microswimmers on their adsorption capacity at confining channel walls is studied by a simple dumbbell model. For a shape polarity of a forward-swimming cone, like the stroke-averaged shape of a sperm, extremely long wall retention times are found, caused by a nonvanishing component of the propulsion force pointing steadily into the wall, which grows exponentially with the self-propulsion velocity and the shape asymmetry. A direct duality relation between shape asymmetry and wall curvature is proposed and verified. Our results are relevant for the design microswimmer with controlled wall-adhesion properties. In addition, we confirm that pressure in active systems is strongly sensitive to the details of the particle-wall interactions." @default.
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- W2128912343 date "2015-05-28" @default.
- W2128912343 modified "2023-10-09" @default.
- W2128912343 title "Giant adsorption of microswimmers: Duality of shape asymmetry and wall curvature" @default.
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- W2128912343 doi "https://doi.org/10.1103/physreve.91.050302" @default.
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