Geometrical factors in propagation block and spiral wave initiation
Author(s) -
V. S. Zykov,
A. P. Krekhov,
Eberhard Bodenschatz
Publication year - 2017
Publication title -
chaos an interdisciplinary journal of nonlinear science
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.971
H-Index - 113
eISSN - 1089-7682
pISSN - 1054-1500
DOI - 10.1063/1.4999473
Subject(s) - spiral (railway) , spiral wave , block (permutation group theory) , coupling (piping) , wave propagation , excitable medium , physics , mechanics , geometry , optics , mathematics , materials science , mathematical analysis , metallurgy
Many theoretical and experimental studies indicate that a propagation block represents an important factor in spiral wave initiation in excitable media. The analytical and numerical results we obtained for a generic two-component reaction-diffusion system demonstrate quantitative conditions for the propagation block in a one-dimensional and a two-dimensional medium due to a sharp spatial increase of the medium's excitability or the coupling strength above a certain critical value. Here, we prove that this critical value strongly depends on the medium parameters and the geometry of the inhomogeneity. For an exemplary two-dimensional medium, we show how the propagation block can be used to initiate spiral waves by a specific choice of the size and shape of the medium's inhomogeneity
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