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Please use this identifier to cite or link to this item:
http://hdl.handle.net/10171/2025
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| Title: | Controlling and synchronizating space time chaos |
| Author(s) : | Boccaletti, S. (S.) Bragard, J. (Jean) Arecchi, F.T. (F.T.) |
| Issue Date: | 1999 |
| Publisher: | American Physical Society |
| Citation: | Phys Rev E, 59, (6) pp. 6574-6578 |
| Keywords: | Materias Investigacion::Física |
| Abstract: | Control and synchronization of continuous space-extended systems is realized by means of a finite number
of local tiny perturbations. The perturbations are selected by an adaptive technique, and they are able to restore
each of the independent unstable patterns present within a space time chaotic regime, as well as to synchronize
two space time chaotic states. The effectiveness of the method and the robustness against external noise is
demonstrated for the amplitude and phase turbulent regimes of the one-dimensional complex Ginzburg-Landau
equation. The problem of the minimum number of local perturbations necessary to achieve control is discussed
as compared with the number of independent spatial correlation lengths. |
| URI: | http://hdl.handle.net/10171/2025 |
| Appears in Collections: | DA - Ciencias - Física - Artículos de Revista
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