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Onsager Condensation in Chiral Active Matter: Universality of Topological Gas Dynamics (2512.01884v1)
Published 1 Dec 2025 in cond-mat.soft, cond-mat.stat-mech, and physics.flu-dyn
Abstract: We identify a thermodynamic phase transition in chiral active matter. Low-frequency disorder triggers global synchronisation and energy dissipation, while high disorder activates a topological heat pump, generating an inverse energy cascade. This drives the system towards an Onsager dipole, which can be arrested into a metastable vortex glass if dispersion is insufficient to overcome the defect lattice. We propose topological gas dynamics as a universality class governed by the interplay of active disorder and topological sorting, unifying active swarms and classical inviscid fluids.
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