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Updated: Jan 2, 2026

Confocal Imaging of Confined Quiescent and Flowing Colloid-polymer Mixtures
Published on: May 20, 2014
Tuning the Random Walk of Active Colloids: From Individual Run-and-Tumble to Dynamic Clustering
Hamid Karani1, Gerardo E Pradillo2, Petia M Vlahovska1,2
1Engineering Sciences and Applied Mathematics, Northwestern University, Evanston, Illinois 60208, USA.
Abstract:
Active particles such as swimming bacteria or self-propelled colloids spontaneously self-organize into large-scale dynamic structures. The emergence of these collective states from the motility pattern of the individual particles, typically a random walk, is yet to be probed in a well-defined synthetic system. Here, we report the experimental realization of tunable colloidal motion that reproduces run-and-tumble and Lévy trajectories. We utilize the Quincke effect to achieve controlled sequences of repeated particle runs and random reorientations. We find that a population of these random walkers exhibit behaviors reminiscent of bacterial suspensions such as dynamic clusters and mesoscale turbulentlike flows.
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