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Updated: Feb 15, 2026

Optimization of Radiochemical Reactions using Droplet Arrays
Published on: February 12, 2021
Optimizing mutual synchronization of rhythmic spatiotemporal patterns in reaction-diffusion systems
Yoji Kawamura1, Sho Shirasaka2, Tatsuo Yanagita3
1Department of Mathematical Science and Advanced Technology, Japan Agency for Marine-Earth Science and Technology, Yokohama 236-0001, Japan.
Abstract:
Optimization of the stability of synchronized states between a pair of symmetrically coupled reaction-diffusion systems exhibiting rhythmic spatiotemporal patterns is studied in the framework of the phase reduction theory. The optimal linear filter that maximizes the linear stability of the in-phase synchronized state is derived for the case in which the two systems are nonlocally coupled. The optimal nonlinear interaction function that theoretically gives the largest linear stability of the in-phase synchronized state is also derived. The theory is illustrated by using typical rhythmic patterns in FitzHugh-Nagumo systems as examples.
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