Publication | Open Access
Dynamical effects induced by long range activation in a nonequilibrium reaction-diffusion system
31
Citations
26
References
2002
Year
Dynamic EquilibriumEngineeringDynamical EffectsComputational ChemistryChemistrySpatial Bistability DomainLong Range ActivationExcitability DomainsAnomalous DiffusionMolecular KineticsPhysicsPhysical ChemistryNonequilibrium Reaction-diffusion SystemQuantum ChemistryNon-equilibrium ProcessNatural SciencesApplied PhysicsDiffusion ProcessReaction ProcessChemical Kinetics
We show both experimentally and numerically that the time scales separation introduced by long range activation can induce oscillations and excitability in nonequilibrium reaction-diffusion systems that would otherwise only exhibit bistability. Namely, we show that in the chlorite-tetrathionate reaction, where the autocatalytic species H+ diffuses faster than the substrates, the spatial bistability domain in the nonequilibrium phase diagram is extended with oscillatory and excitability domains. A simple model and a more realistic model qualitatively account for the observed dynamical behavior. The latter model provides quantitative agreement with the experiments.
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