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Using Activity to Compartmentalize Binary Mixtures

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arxiv 2407.07826 v1 pith:TYUH6UAF submitted 2024-07-10 cond-mat.soft cond-mat.mtrl-scicond-mat.stat-mechphysics.comp-ph

classification cond-mat.softcond-mat.mtrl-scicond-mat.stat-mechphysics.comp-ph
keywords activitymixturesactivebehaviorsfastmathrmparticleseparation
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abstract

We computationally study suspensions of slow and fast active Brownian particles that have undergone motility induced phase separation and are at steady state. Such mixtures, of varying non-zero activity, remain largely unexplored even though they are relevant for a plethora of systems and applications ranging from cellular biophysics to drone swarms. Our mixtures are modulated by their activity ratios ($\mathrm{Pe}^\mathrm{R}$), which we find to encode information by giving rise to three regimes, each of which display their unique emergent behaviors. Specifically, we found non-monotonic behavior of macroscopic properties, e.g. density and pressure, as a function of activity ratio, microphase separation of fast and slow particle domains, increased fluctuations on the interface and severe avalanche events compared to monodisperse active systems. Our approach of simultaneously varying the two activities of the particle species allowed us to discover these behaviors and explain the microscopic physical mechanisms that drive them.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Active sorting to boundaries in active nematic -- passive isotropic fluid mixtures

    cond-mat.soft 2025-09 accept novelty 6.0 of 10

    Extensile active fluid is pushed to planar-anchored walls and away from homeotropic-anchored walls; contractile activity reverses both.

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