Three-Dimensional Autonomous Pacemaker in the Photosensitive Belousov-Zhabotinsky medium
arXiv:1406.5964 · doi:10.1209/0295-5075/108/10004
Abstract
In experiments with the photosensitive Belousov-Zhabotinsky reaction (PBZR) we found a stable three-dimensional organizing center that periodically emits trigger waves of chemical concentration. The experiments are performed in a parameter regime with negative line tension using an open gel reactor to maintain stationary non-equilibrium conditions. The observed periodic wave source is formed by a scroll ring stabilized due to its interaction with a no-flux boundary. Sufficiently far from the boundary, the scroll ring expands and undergoes the negative line tension instability before it finally develops into scroll wave turbulence. Our experimental results are reproduced by numerical integration of the modified Oregonator model for the PBZR. Stationary and breathing self-organized pacemakers have been found in these numerical simulations. In the latter case, both the radius of the scroll ring and the distance of its filament plane to the no-flux boundary after some transient undergo undamped stable limit cycle oscillations. So far, in contrary to their stationary counterpart, the numerically predicted breathing autonomous pacemaker has not been observed in the chemical experiment.
References in corpus (1)
Cited by in corpus (13)
- Spatial Confinement Causes Lifetime Enhancement and Expansion of Vortex Rings with Positive Filament Tension
- Analytical, Optimal, and Sparse Optimal Control of Traveling Wave Solutions to Reaction-Diffusion Systems
- The length of excitable knots
- Liquid Marble Photosensor
- Front propagation in three-dimensional corrugated reaction-diffusion media
- Fredkin and Toffoli gates implemented in Oregonator model of Belousov-Zhabotinsky medium
- Wave propagation in spatially modulated tubes
- Stable and Unstable Vortex Knots in Excitable Media
- Dynamics of linked filaments in excitable media
- Threaded rings that swim in excitable media
- Excitable London: Street map analysis with Oregonator model
- Rings on strings in excitable media
- Colonies of threaded rings in excitable media