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Thermodynamic constraints and exact scaling exponents of flocking matter

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arxiv 2405.02283 v2 pith:FTHTG6W5 submitted 2024-05-03 cond-mat.stat-mech cond-mat.softhep-th

classification cond-mat.stat-mechcond-mat.softhep-th
keywords boostexactfluidsscalingsthermodynamictoner-tutransportacknowledging
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We use advances in the formalism of boost agnostic passive fluids to constrain transport in polar active fluids, which are subsequently described by the Toner-Tu equations. Acknowledging that the system fundamentally breaks boost symmetry we compel what were previously entirely phenomenological parameters in the Toner-Tu model to satisfy precise relationships among themselves. Consequently, we propose a thermodynamic argument to determine the exact scalings of the transport coefficients under dynamical renormalisation group flow. These scalings perfectly agree with the results of recent state-of-the-art numerical simulation and experiments

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