arXiv · 2604.05909
Emergent Rotation of Passive Clusters in a Chiral Active Bath
Abstract
We investigate the dynamics of passive particles immersed in a bath of chiral active particles, focusing on the emergence of collective rotational motion. Using numerical simulations, we show that passive particles aggregate into clusters that can exhibit persistent rotation within a well-defined regime of size ratio and active particle packing fraction. This rotational state is characterized by the coexistence of internal structural order, enhanced shape fluctuations, and a coherent net torque generated by the surrounding active bath. Outside this regime, the dynamics remain predominantly diffusive, highlighting that sustained rotation is not ubiquitous but arises from a delicate interplay between geometry, activity, and chirality. Furthermore, we demonstrate that chirality heterogeneity disrupts rotational coherence, while a uniform chiral bath promotes strongly superdiffusive angular dynamics. These results provide new insights into the role of chirality and collective interactions in shaping the emergent behavior of active-passive mixtures.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Divya Kushwaha, Abhra Puitandy, Shradha Mishra. 2026-04-07. Emergent Rotation of Passive Clusters in a Chiral Active Bath. https://arxiv.org/abs/2604.05909
Cite the original work for its findings. Save a collection to share your selection of sources.