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Thermodynamics of active matter: Tracking dissipation across scales

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arxiv 2401.02252 v1 pith:5NYUV6HJ submitted 2024-01-04 cond-mat.soft cond-mat.stat-mech

classification cond-mat.softcond-mat.stat-mech
keywords dissipationactiveentropymodelparticlesproductionthermodynamicsbrownian
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The concept of entropy has been pivotal in the formulation of thermodynamics. For systems driven away from thermal equilibrium, a comparable role is played by entropy production and dissipation. Here we provide a comprehensive picture how local dissipation due to effective chemical events manifests on large scales in active matter. We start from a microscopic model for a single catalytic particle involving explicit solute molecules and show that it undergoes directed motion. Leveraging stochastic thermodynamics, we calculate the average entropy production rate for interacting particles. We then show how the model of active Brownian particles emerges in a certain limit and we determine the entropy production rate on the level of the hydrodynamic equations. Our results augment the model of active Brownian particles with rigorous expressions for the dissipation that cannot be inferred from their equations of motion, and we illustrate consequences for wall aggregation and motility-induced phase separation. Notably, our bottom-up approach reveals that a naive application of the Onsager currents yields an incorrect expression for the local dissipation.

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Cited by 2 Pith papers

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

  1. Control of active field theories at minimal dissipation

    cond-mat.stat-mech 2025-04 conditional novelty 7.0 of 10

    For thermodynamically consistent active field theories, the total heat including post-protocol relaxation is minimized at a finite protocol duration, and in a conserved active phase-separation model the optimal durati...

  2. Perspective: Time irreversibility in systems observed at coarse resolution

    cond-mat.stat-mech 2024-12 conditional novelty 3.0 of 10

    A perspective arguing that time-irreversibility and entropy production inferred from coarse-grained observations depend critically on the type of coarse graining, with milestoning able to create false irreversibility signals.

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