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October 3, 20250 citationsOpen Access

Arrested phase separation and chiral symmetry breaking in active dumbbells under shear

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LCLucio Mauro CarenzaGNGiuseppe NegroPDPasquale Digregorio

Key Points

  • Phase separation growth is halted under shear, with average cluster size stabilizing over time.
  • Enhanced activity allows clusters to resist shear breakup, although size decreases with higher shear rates.
  • Clusters adopt elongated shapes and reduced polarization when subjected to increasing shear.
  • Chiral symmetry breaking occurs in cluster organization, whereby dumbbells align with opposing torques to enhance stability.

Abstract

Through molecular dynamics simulations, we investigate the phase separation and aggregation dynamics of active dumbbell particles in two-dimensions subjected to shear. We find that the growth of the phase-separated region is arrested when shear is applied, with the average clusters size plateauing towards a value Rₛ that remains constant over time. While activity enhances the resilience of clusters against shear-induced breakup, Rₛ decreases with growing shear rate γ, with an intermediate regime where Rₛ γ^-1. We find that clusters in the stationary state are progressively less polarized and increasingly elongated with increasing shear. At the same time, we find a breaking in chiral symmetry of both rotation direction and internal organization of clusters: typically, dumbbells point towards the cluster center with a small non-zero angle, such that the active torque opposes the shear torque, with cluster's angular velocity well captured by a simplified analytical model. We argue this conformation makes clusters more stable against shear.

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Cite This Study

Carenza et al. (2025) studied this question.

synapsesocial.com/papers/68e0450fa99c246f578b4091https://doi.org/10.1103/3t18-sq96
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Phase Separation Kinetics and Cluster Dynamics in Two-Dimensional Active Dumbbell Systems2024
  2. 2Morphology, Polarization Patterns, Compression, and Entropy Production in Phase-Separating Active Dumbbell Systems2025
  3. 3Localized jammed clusters persist in shear-thickening suspension subjected to swirling excitation2024 · 2 citations
  4. 4Self-assembly behaviour of diblock copolymer-diblock copolymer under oscillating shear field2024
  5. 5Self-assembly behaviour of diblock copolymer-diblock copolymer under oscillating shear field2024