We report on experiments with the photosensitive chlorine dioxide-iodine-malonic acid reaction (CDIMA) when forced with a random (spatiotemporally) distributed illumination. Acting on a mixed mode consisting of oscillating spots, close enough to the Hopf and Turing codimension-two bifurcation, we observe attenuation of oscillations while the spatial pattern is preserved. Numerical simulations confirm and extend these results. All together these observations point out to a larger vulnerability of the Hopf with respect to the Turing mode when facing noise of intermediate intensity and small correlation parameters.Peer ReviewedPostprint (published version
Pattern formation induced by noise is a celebrated phenomenon in diverse reaction-diffusion systems....
We investigate the interaction between reaction-diffusion systems coupled by diffusion. The photosen...
We use the photosensitive chlorine dioxide-iodine-malonic acid reaction-diffusion system to study wa...
Pattern formation induced by noise is a celebrated phenomenon in diverse experimental and numerical ...
We report on experiments with the photosensitive chlorine dioxide-iodine-malonic acid reaction (CDIM...
We report on experiments with the photosensitive chlorine dioxide-iodine-malonic acid reaction (CDIM...
We report on experiments with the photosensitive chlorine dioxide-iodine-malonic acid reaction (CDIM...
Pattern formation induced by noise is a celebrated phenomenon in diverse experimental and numerical ...
Pattern formation induced by noise is a celebrated phenomenon in diverse experimental and numerical ...
The interaction between Hopf and Turing modes has been the subject of active research in recent year...
The interaction between Hopf and Turing modes has been the subject of active research in recent year...
The interaction between Hopf and Turing modes has been the subject of active research in recent year...
Pattern formation induced by noise is a celebrated phenomenon in diverse reaction-diffusion systems....
The interaction between Hopf and Turing modes has been the subject of active research in recent year...
The interaction between Hopf and Turing modes has been the subject of active research in recent year...
Pattern formation induced by noise is a celebrated phenomenon in diverse reaction-diffusion systems....
We investigate the interaction between reaction-diffusion systems coupled by diffusion. The photosen...
We use the photosensitive chlorine dioxide-iodine-malonic acid reaction-diffusion system to study wa...
Pattern formation induced by noise is a celebrated phenomenon in diverse experimental and numerical ...
We report on experiments with the photosensitive chlorine dioxide-iodine-malonic acid reaction (CDIM...
We report on experiments with the photosensitive chlorine dioxide-iodine-malonic acid reaction (CDIM...
We report on experiments with the photosensitive chlorine dioxide-iodine-malonic acid reaction (CDIM...
Pattern formation induced by noise is a celebrated phenomenon in diverse experimental and numerical ...
Pattern formation induced by noise is a celebrated phenomenon in diverse experimental and numerical ...
The interaction between Hopf and Turing modes has been the subject of active research in recent year...
The interaction between Hopf and Turing modes has been the subject of active research in recent year...
The interaction between Hopf and Turing modes has been the subject of active research in recent year...
Pattern formation induced by noise is a celebrated phenomenon in diverse reaction-diffusion systems....
The interaction between Hopf and Turing modes has been the subject of active research in recent year...
The interaction between Hopf and Turing modes has been the subject of active research in recent year...
Pattern formation induced by noise is a celebrated phenomenon in diverse reaction-diffusion systems....
We investigate the interaction between reaction-diffusion systems coupled by diffusion. The photosen...
We use the photosensitive chlorine dioxide-iodine-malonic acid reaction-diffusion system to study wa...