Dynamics of Turing Patterns under Spatiotemporal Forcing
Abstract
We study, both theoretically and experimentally, the dynamical response of Turing patterns to a spatiotemporal forcing in the form of a traveling-wave modulation of a control parameter. We show that from strictly spatial resonance, it is possible to induce new, generic dynamical behaviors, including temporally modulated traveling waves and localized traveling solitonlike solutions. The latter make contact with the soliton solutions of Coullet [<article>Phys. Rev. Lett.<coden>PRLTAO</coden><issn>0031-9007</issn> 56, 724 (1986)</article>] and generalize them. The stability diagram for the different propagating modes in the Lengyel-Epstein model is determined numerically. Direct observations of the predicted solutions in experiments carried out with light modulations in the photosensitive chlorine dioxide-iodine-malonic acid reaction are also reported.
- Publication:
-
Physical Review Letters
- Pub Date:
- March 2003
- DOI:
- arXiv:
- arXiv:physics/0301079
- Bibcode:
- 2003PhRvL..90l8301R
- Keywords:
-
- 82.40.Ck;
- 47.20.Ky;
- 47.54.+r;
- 82.40.Bj;
- Pattern formation in reactions with diffusion flow and heat transfer;
- Nonlinearity bifurcation and symmetry breaking;
- Oscillations chaos and bifurcations;
- Physics - Chemical Physics;
- Condensed Matter - Soft Condensed Matter;
- Nonlinear Sciences - Pattern Formation and Solitons
- E-Print:
- 6 pages, 5 figures