Irreversible Mesoscale Fluctuations Herald the Emergence of Dynamical Phases

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Abstract

We study fluctuating field models with spontaneously emerging dynamical phases. We consider two typical transition scenarios associated with parity-time symmetry breaking: oscillatory instabilities and critical exceptional points. An analytical investigation of the low-noise regime reveals a drastic increase of the mesoscopic entropy production toward the transitions. For an illustrative model of two nonreciprocally coupled Cahn-Hilliard fields, we find physical interpretations in terms of actively propelled interfaces and a coupling of eigenmodes of the linearized dynamics near the critical exceptional point.

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Suchanek, T., Kroy, K., & Loos, S. A. M. (2023). Irreversible Mesoscale Fluctuations Herald the Emergence of Dynamical Phases. Physical Review Letters, 131(25). https://doi.org/10.1103/PhysRevLett.131.258302

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