A new kind of nonlinear nonequilibrium patterns —twisted spiral waves—is predicted for periodically forced oscillatory reaction-diffusion media. We show, furthermore, that, in such media, spatial regions with modified local properties may act as traps where propagating waves can be stored and released in a controlled way. Underlying both phenomena is the effect of the wavelength-dependent propagation reversal of traveling phase fronts, always possible when homogeneous oscillations are modulationally stable without forcing. The analysis is performed using as a model the complex Ginzburg-Landau equation, applicable for reaction-diffusion systems in the vicinity of a supercritical Hopf bifurcation
We report experimental results on chemical waves in 1,4-cyclohexanedione Belousov-Zhabotinsky system...
Understanding the transition from planar fronts, trigger waves, or solitary waves to spirals in exci...
Understanding the transition from planar fronts, trigger waves, or solitary waves to spirals in exci...
A new kind of nonlinear nonequilibrium patterns —twisted spiral waves—is predicted for periodically ...
grantor: University of TorontoWhen resonant forcing of an oscillatory medium causes phase...
Propagation of target and spiral waves in the presence of walls and windows in a two-dimensional rea...
We study patterns that arise in the wake of an externally triggered, spatially propagating instabili...
We study patterns that arise in the wake of an externally triggered, spatially propagating instabili...
An extension of the complex Ginzburg-Landau equation describing resonant spatio-temporal forcing of ...
Pattern-forming fronts are often controlled by an external stimulus which progresses through a stabl...
Resonant forcing of an oscillatory medium has been found to cause irregular spatiotemporal patterns ...
Populations of oscillators that present both local and global coupling can exhibit diffusive instabi...
The existence and stability of stable standing-wave patterns in an assembly of spatially distributed...
This chapter describes the rotating spiral waves and oscillations in reaction–diffusion equations. R...
This is a study of fronts and patterns formed in reaction-diffusion systems. A doubly-diffusive vers...
We report experimental results on chemical waves in 1,4-cyclohexanedione Belousov-Zhabotinsky system...
Understanding the transition from planar fronts, trigger waves, or solitary waves to spirals in exci...
Understanding the transition from planar fronts, trigger waves, or solitary waves to spirals in exci...
A new kind of nonlinear nonequilibrium patterns —twisted spiral waves—is predicted for periodically ...
grantor: University of TorontoWhen resonant forcing of an oscillatory medium causes phase...
Propagation of target and spiral waves in the presence of walls and windows in a two-dimensional rea...
We study patterns that arise in the wake of an externally triggered, spatially propagating instabili...
We study patterns that arise in the wake of an externally triggered, spatially propagating instabili...
An extension of the complex Ginzburg-Landau equation describing resonant spatio-temporal forcing of ...
Pattern-forming fronts are often controlled by an external stimulus which progresses through a stabl...
Resonant forcing of an oscillatory medium has been found to cause irregular spatiotemporal patterns ...
Populations of oscillators that present both local and global coupling can exhibit diffusive instabi...
The existence and stability of stable standing-wave patterns in an assembly of spatially distributed...
This chapter describes the rotating spiral waves and oscillations in reaction–diffusion equations. R...
This is a study of fronts and patterns formed in reaction-diffusion systems. A doubly-diffusive vers...
We report experimental results on chemical waves in 1,4-cyclohexanedione Belousov-Zhabotinsky system...
Understanding the transition from planar fronts, trigger waves, or solitary waves to spirals in exci...
Understanding the transition from planar fronts, trigger waves, or solitary waves to spirals in exci...