A pacemaker, regularly emitting chemical waves, is created out of noise when an excitable photosensitive Belousov-Zhabotinsky medium, strictly unable to autonomously initiate autowaves, is forced with a spatiotemporal patterned random illumination. These experimental observations are also reproduced numerically by using a set of reaction-diffusion equations for an activator-inhibitor model, and further analytically interpreted in terms of genuine coupling effects arising from parametric fluctuations. Within the same framework we also address situations of noise-sustained propagation in subexcitable media.Peer ReviewedPostprint (published version
Chemical waves are initiated in an excitable medium by resonance with local periodic forcing of the ...
A closed excitable pathway with one point-to-point connection is used to generate a rotating wave bo...
We propose that the behavior of nonlinear media can be controlled dynamically through coevolutionary...
A pacemaker, regularly emitting chemical waves, is created out of noise when an excitable photosensi...
A pacemaker, regularly emitting chemical waves, is created out of noise when an excitable photosensi...
A pacemaker, regularly emitting chemical waves, is created out of noise when an excitable photosensi...
Chemical waves are initiated in an excitable medium by resonance with local periodic forcing of the ...
We present an analytic and numerical study of the effects of external fluctuations in active media. ...
We present an analytic and numerical study of the effects of external fluctuations in active media. ...
We show that external fluctuations induce excitable behavior in a bistable spatially extended system...
The effect of quenched disorder on the propagation of autowaves in excitable media is studied both e...
A subexcitable medium of Belousov-Zhabotinsky (BZ) reaction subjected to external Gaussian white noi...
We investigate pattern formation in oscillatory reaction-diffusion systems where wave sources and si...
The behavior of chemical waves advancing through a disordered excitable medium is investigated in te...
We study the propagation of periodic pulse trains in excitable media exposed to external spatio-temp...
Chemical waves are initiated in an excitable medium by resonance with local periodic forcing of the ...
A closed excitable pathway with one point-to-point connection is used to generate a rotating wave bo...
We propose that the behavior of nonlinear media can be controlled dynamically through coevolutionary...
A pacemaker, regularly emitting chemical waves, is created out of noise when an excitable photosensi...
A pacemaker, regularly emitting chemical waves, is created out of noise when an excitable photosensi...
A pacemaker, regularly emitting chemical waves, is created out of noise when an excitable photosensi...
Chemical waves are initiated in an excitable medium by resonance with local periodic forcing of the ...
We present an analytic and numerical study of the effects of external fluctuations in active media. ...
We present an analytic and numerical study of the effects of external fluctuations in active media. ...
We show that external fluctuations induce excitable behavior in a bistable spatially extended system...
The effect of quenched disorder on the propagation of autowaves in excitable media is studied both e...
A subexcitable medium of Belousov-Zhabotinsky (BZ) reaction subjected to external Gaussian white noi...
We investigate pattern formation in oscillatory reaction-diffusion systems where wave sources and si...
The behavior of chemical waves advancing through a disordered excitable medium is investigated in te...
We study the propagation of periodic pulse trains in excitable media exposed to external spatio-temp...
Chemical waves are initiated in an excitable medium by resonance with local periodic forcing of the ...
A closed excitable pathway with one point-to-point connection is used to generate a rotating wave bo...
We propose that the behavior of nonlinear media can be controlled dynamically through coevolutionary...