This chapter describes the rotating spiral waves and oscillations in reaction–diffusion equations. Rotating spiral waves arise naturally as models of spatially organized activity in various chemical and biochemical processes. The Belousov–Zhabotinsky reaction provides a classic example. Experiments with this reaction in a two-dimensional medium produce spiral concentration patterns that rotate with constant frequency about a fixed center. These waves result from interplay between the chemical process of reaction and the physical process of molecular diffusion. The chapter discusses the existence and various analytical and asymptotic properties of these waves. It presents the concrete computations for specific parameter values. The demonstra...
Spiral patterns have been observed experimentally, numerically, and theoretically in a variety of sy...
Rotating spiral waves are a form of self-organization observed in spatially extended systems of phys...
Understanding the transition from planar fronts, trigger waves, or solitary waves to spirals in exci...
This chapter describes the rotating spiral waves and oscillations in reaction–diffusion equations. R...
This chapter describes the rotating spiral waves and oscillations in reaction–diffusion equations. R...
This chapter describes the rotating spiral waves and oscillations in reaction–diffusion equations. R...
We resolve the question of existence of regular rotating spiral waves as a consequence of only the p...
Rotating spiral waves organize excitation in various biological, physical, and chemical systems. The...
Rotating spiral waves organize excitation in various biological, physical, and chemical systems. The...
Rotating spiral waves organize excitation in vari-ous biological, physical and chemical systems. The...
In nature, spatio-temporal patterns in excitable media occur in seemingly un-limited variety. As ear...
We report experimental results on chemical waves in 1,4-cyclohexanedione Belousov-Zhabotinsky system...
Rotating spiral waves are a form of self-organization observed in spatially extended systems of phys...
Rotating spiral waves are a form of self-organization observed in spatially extended systems of phys...
The recently discovered chimera state involves the coexistence of synchronized and desynchronized st...
Spiral patterns have been observed experimentally, numerically, and theoretically in a variety of sy...
Rotating spiral waves are a form of self-organization observed in spatially extended systems of phys...
Understanding the transition from planar fronts, trigger waves, or solitary waves to spirals in exci...
This chapter describes the rotating spiral waves and oscillations in reaction–diffusion equations. R...
This chapter describes the rotating spiral waves and oscillations in reaction–diffusion equations. R...
This chapter describes the rotating spiral waves and oscillations in reaction–diffusion equations. R...
We resolve the question of existence of regular rotating spiral waves as a consequence of only the p...
Rotating spiral waves organize excitation in various biological, physical, and chemical systems. The...
Rotating spiral waves organize excitation in various biological, physical, and chemical systems. The...
Rotating spiral waves organize excitation in vari-ous biological, physical and chemical systems. The...
In nature, spatio-temporal patterns in excitable media occur in seemingly un-limited variety. As ear...
We report experimental results on chemical waves in 1,4-cyclohexanedione Belousov-Zhabotinsky system...
Rotating spiral waves are a form of self-organization observed in spatially extended systems of phys...
Rotating spiral waves are a form of self-organization observed in spatially extended systems of phys...
The recently discovered chimera state involves the coexistence of synchronized and desynchronized st...
Spiral patterns have been observed experimentally, numerically, and theoretically in a variety of sy...
Rotating spiral waves are a form of self-organization observed in spatially extended systems of phys...
Understanding the transition from planar fronts, trigger waves, or solitary waves to spirals in exci...