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arxiv: 2510.14101 · v3 · pith:22NV52NVnew · submitted 2025-10-15 · ❄️ cond-mat.stat-mech · nlin.AO

Elementary derivation of the dissipation-coherence bound for stochastic oscillators

classification ❄️ cond-mat.stat-mech nlin.AO
keywords bounddissipation-coherenceconditionelementarystochasticsystemsapproachcombining
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The dissipation-coherence bound is a conjectured tradeoff between entropy production and the quality of stochastic oscillations. We show that this bound can be derived by combining the higher-order ``thermodynamic uncertainty relation'' with a simple condition on phase-current fluctuations. In one-dimensional cyclic systems, our proposed condition is shown to be equivalent to the dissipation-coherence bound itself. Our approach yields an elementary proof in the weak-noise Gaussian regime and extends naturally to some non-Gaussian systems, as we illustrate with a run-and-tumble particle. Finally, we contrast current-based and spectral formulations of the dissipation-coherence bound.

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Cited by 2 Pith papers

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    Decomposes entropy production in OU processes into oscillatory and nonnormal parts with associated trade-offs, demonstrated on a bead-spring model.