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dc.contributor.authorBiktasheva, I. V.en_GB
dc.contributor.authorBarkley, D.en_GB
dc.contributor.authorBiktashev, V. N.en_GB
dc.contributor.authorBordyugov, G. V.en_GB
dc.contributor.authorFoulkes, A. J.en_GB
dc.date.accessioned2012-09-28T17:59:39Zen_GB
dc.date.accessioned2013-03-20T12:27:09Z
dc.date.issued2009-05-11en_GB
dc.description.abstractRotating spiral waves are a form of self-organization observed in spatially extended systems of physical, chemical, and biological natures. A small perturbation causes gradual change in spatial location of spiral's rotation center and frequency, i.e., drift. The response functions (RFs) of a spiral wave are the eigenfunctions of the adjoint linearized operator corresponding to the critical eigenvalues lambda=0,+/-iomega. The RFs describe the spiral's sensitivity to small perturbations in the way that a spiral is insensitive to small perturbations where its RFs are close to zero. The velocity of a spiral's drift is proportional to the convolution of RFs with the perturbation. Here we develop a regular and generic method of computing the RFs of stationary rotating spirals in reaction-diffusion equations. We demonstrate the method on the FitzHugh-Nagumo system and also show convergence of the method with respect to the computational parameters, i.e., discretization steps and size of the medium. The obtained RFs are localized at the spiral's core.en_GB
dc.identifier.citationVol. 79 (5), article 056702en_GB
dc.identifier.doi10.1103/PhysRevE.79.056702en_GB
dc.identifier.urihttp://hdl.handle.net/10036/3780en_GB
dc.language.isoengen_GB
dc.publisherAmerican Physical Societyen_GB
dc.titleComputation of the response functions of spiral waves in active mediaen_GB
dc.date.available2012-09-28T17:59:39Zen_GB
dc.date.available2013-03-20T12:27:09Z
dc.identifier.issn1539-3755en_GB
exeter.place-of-publicationUnited Statesen_GB
dc.description© 2009 The American Physical Societyen_GB
dc.identifier.journalPhysical Review E - Statistical, Nonlinear and Soft Matter Physicsen_GB


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