Signatures of irreversibility in microscopic models of flocking
ORAL
Abstract
Flocking is one of the most startling collective behaviors in active matter. The emergence of collective motion in d=2 occurring in these systems is a genuine non-equilibrium feature. It marks a fundamental difference with classical passive models for ferromagnets and requires irreversibility.
We investigate how the interplay of alignment interaction and self-propulsion in Vicsek-like dynamics leads to the breakdown of detailed balance and constrains asymmetries in the steady-state distribution of the many-body system. We quantify the departure from equilibrium through measurements of the entropy production rate on numerical simulations of polar ABPs, considering two variants of the model, with metric and topological interaction rules. It is known that they give rise to different kinds of phase transitions and macroscopic configurations, and we find that different signatures of irreversibility can be identified in the two cases.
We investigate how the interplay of alignment interaction and self-propulsion in Vicsek-like dynamics leads to the breakdown of detailed balance and constrains asymmetries in the steady-state distribution of the many-body system. We quantify the departure from equilibrium through measurements of the entropy production rate on numerical simulations of polar ABPs, considering two variants of the model, with metric and topological interaction rules. It is known that they give rise to different kinds of phase transitions and macroscopic configurations, and we find that different signatures of irreversibility can be identified in the two cases.
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Presenters
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Federica Ferretti
Univ of Rome La Sapienza
Authors
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Federica Ferretti
Univ of Rome La Sapienza
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Caroline Holmes
Princeton University
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Jordan L Shivers
Rice University
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Simon B Grosse-Holz
Massachusetts Institute of Technology MI, Massachusetts Institute of Technology
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Irene Giardina
Univ of Rome La Sapienza
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Aleksandra M Walczak
Ecole Normale Superieure, CNRS - Sorbonne University
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Thierry Mora
CNRS - Sorbonne University, Ecole Normale Superieure, Laboratoire de physique de l'Ecole normale superieure, CNRS, Laboratoire de physique de l'École normale supérieure