Bibliographic Details
| Title: |
Design principle of multi-cluster and desynchronized states in oscillatory media via nonlinear global feedback. |
| Authors: |
Kobayashi, Yasuaki1 kobayashi@nsc.es.hokudai.ac.jp, Kori, Hiroshi2,3 kori.hiroshi@ocha.ac.jp |
| Source: |
New Journal of Physics. Mar2009, Vol. 11 Issue 3, p1-17. 17p. |
| Subjects: |
Semiconductor diffusion, Oscillations, Frequencies of oscillating systems, Electronic feedback, Document clustering |
| Abstract: |
A theoretical framework is developed for the precise control of spatial patterns in oscillatory media using nonlinear global feedback, where a proper form of the feedback function corresponding to a specific pattern is predicted through the analysis of a phase diffusion equation with global coupling. In particular, feedback functions that generate the following spatial patterns are analytically given: (i) 2-cluster states with an arbitrary population ratio, (ii) equally populated multi-cluster states and (iii) a desynchronized state. Our method is demonstrated numerically by using the Brusselator model in the oscillatory regime. Experimental realization is also discussed. [ABSTRACT FROM AUTHOR] |
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| Database: |
Engineering Source |