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Published January 20, 2023 | public
Journal Article

Confined active matter in external fields

Abstract

We analyze a dilute suspension of active particles confined between walls and subjected to fields that can modulate particle speed as well as orientation. Generally, the particle distribution is different in the bulk compared to near the walls. In the bulk, particles tend to accumulate in the regions of low speed, but in the presence of an orienting field normal to the walls, particles rotate to align with the field and accumulate in the field direction. At the walls, particles tend to accumulate pointing into the walls and thereby exert pressure on walls. But the presence of strong orienting fields can cause the particles to reorient away from the walls, and hence shows a possible mechanism for preventing contamination of surfaces. The pressure at the walls depends on the wall separation and the field strengths. This work demonstrates how multiple fields with different functionalities can be used to control active matter under confinement.

Additional Information

© The Royal Society of Chemistry 2023. G. J. E. acknowledges the hospitality of the Division of Chemistry and Chemical Engineering at the California Institute of Technology during a sabbatical stay that served as a formative period of this work. This work was supported the National Science Foundation (J. F. B., grant no. CBET 1803662), the Natural Sciences and Engineering Research Council of Canada (G. J. E., grant no. RGPIN-2020-04850) and by a UBC Killam Research Fellowship to G. J. E.

Additional details

Created:
August 22, 2023
Modified:
October 23, 2023