Deutsche Physikalische Gesellschaft The Institute of Physics Deutsche Physikalische Gesellschaft | Institute of Physics Quick Search:Help  
New Journal of Physics
Athens/Institutional login
IOP login: Password:   
Create account | Alerts | Contact us
IOP Journals Home | IOP Journals List | EJs Extra | This Journal | Search | Authors | Referees | Librarians | User Options | Help |
< Previous article | Next article * | This volume ^ | Content finder *

Noise-sustained and controlled synchronization of stirred excitable media by external forcing

Changsong Zhou et al 2005 New J. Phys. 7 18   doi: 10.1088/1367-2630/7/1/018  Help

   PDF (800 KB) | HTML | References | Articles citing this article

Changsong Zhou1 and Jürgen Kurths
Institute of Physics, University of Potsdam, PF 601553, 14415 Potsdam, Germany
1 Author to whom any correspondence should be addressed.
E-mail: cszhou@agnld.uni-potsdam.de

Part of Focus on Brownian Motion and Diffusion in the 21st Century

Abstract. Most of the previous studies on constructive effects of noise in spatially extended systems have focused on static media, e.g., of the reaction–diffusion type. Because many active chemical or biological processes occur in a fluid environment with mixing, we investigate here the interplay among noise, excitability, mixing and external forcing in excitable media advected by a chaotic flow, in a two-dimensional FitzHugh–Nagumo model described by a set of reaction–advection–diffusion equations. In the absence of external forcing, noise may generate sustained coherent oscillations of the media in a range of noise intensities and stirring rates. We find that these noise-sustained oscillations can be synchronized by external periodic signals much smaller than the threshold. Analysis of the locking regions in the parameter space of the signal period, stirring rate and noise intensity reveals that the mechanism underlying the synchronization behaviour is a matching between the time scales of the forcing signal and the noise-sustained oscillations. The results demonstrate that, in the presence of a suitable level of noise, the stirred excitable media act as self-sustained oscillatory systems and become much easier to be entrained by weak external forcing. Our results may be verified in experiments and are useful to understand the synchronization of population dynamics of oceanic ecological systems by annual cycles.

Received 19 August 2004
Published 31 January 2005

Bookmark and Share Post to CiteUlike | Post to Connotea | Post to Bibsonomy

 

Find related articles





Article options

Authors & Referees

 
< Previous article | Next article * | This volume ^
Content finder
  Full Search
  Help


  
Setup information is available for Adobe Acrobat.
EndNote, ProCite ® and Reference Manager ® are registered trademarks of ISI Researchsoft.
Copyright © 1998-2009 Deutsche Physikalische Gesellschaft & Institute of Physics
 
Bioinspiration and Biomimetics reasearch banner