Sedimentation and structure of squirmer suspensions under gravity
C. Miguel Barriuso G., Horacio Serna, Ignacio Pagonabarraga, Chantal Valeriani
Universidad Complutense de Madrid Institute for Cross-Disciplinary Physics and Complex Systems Universitat de Barcelona
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the dissipative particle dynamics (DPD) coarse-grained model. We first study the collective sedimentation of passive colloids and microswimmers of the puller and pusher types upon increasing the imposed gravitational field and compare them with previous results. Once sedimentation occurs, we observe that, as the gravitational field increases, the bottom layer undergoes a transition to an ordered state compatible with a hexagonal crystal. In comparison with passive colloids, both pullers and pushers easily rearrange at the bottom layer to anneal defects. Specifically, pullers are better than pushers in preserving the hexagonal order of the bottom mono-layer at high gravitational fields.
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