Vortex pattern stabilization in thin films resulting from shear thickening of active suspensions
Soft Condensed Matter
2024-04-02 v1 Biological Physics
Fluid Dynamics
Abstract
The need for structuring on micrometer scales is abundant, for example, in view of phononic applications. We here outline a novel approach based on the phenomenon of active turbulence on the mesoscale. As we demonstrate, a shear-thickening carrier fluid of active microswimmers intrinsically stabilizes regular vortex patterns of otherwise turbulent active suspensions. The fluid self-organizes into a periodically structured nonequilibrium state. Introducing additional passive particles of intermediate size leads to regular spatial organization of these objects. Our approach opens a new path towards functionalization through patterning of thin films and membranes.
Keywords
Cite
@article{arxiv.2403.09523,
title = {Vortex pattern stabilization in thin films resulting from shear thickening of active suspensions},
author = {Henning Reinken and Andreas M. Menzel},
journal= {arXiv preprint arXiv:2403.09523},
year = {2024}
}