Phase transitions and entropies for synchronizing oscillators.
basic_science · Level V
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- Record sourced from PubMed, PMID 26871059.
- Also identified by DOI 10.1103/PhysRevE.93.012143.
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Abstract
We study a generic model of coupled oscillators. In the model there is competition between phase synchronization and diffusive effects. For a model with a finite number of states we derive how a phase transition occurs when the coupling parameter is varied. The phase transition is characterized by a symmetry breaking and a discontinuity in the first derivative of the order parameter. We quantitatively account for how the synchronized pulse is a low-entropy structure that facilitates the production of more entropy by the system as a whole. For a model with many states we apply a continuum approximation and derive a potential Burgers' equation for a propagating pulse. No phase transition occurs in that case. However, positive entropy production by diffusive effects still exceeds negative entropy production by the shock formation.
Medical subject headings
- Entropy
- Models, Theoretical
- Phase Transition