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Instability of periodic traveling wave solutions in a modified FitzHugh-Nagumo model for excitable media

机译:修正FitzHugh-Nagumo模型中可激发介质的周期行波解的不稳定性

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We introduce a two-variable system of reaction-diffusion equations for excitable media. We numerically investigate the existence and stability of periodic traveling wave solutions in a two-dimensional parameter plane. Our results based on the method of continuation show a stability change of Eckhaus type. There are two families of periodic traveling waves: fast and slow. The fast family is stable in the case of standard FitzHugh-Nagumo excitable system. However, we observe that the fast family becomes unstable in our model. Consequently, it bifurcates to an oscillating wave. We explain this phenomenon by numerically calculating the essential spectra of the periodic traveling wave solutions. Moreover, we study the stability of the periodic traveling wave solutions for the Aliev-Panfilov excitable system and compare its results with the proposed model. We show that the stability boundary of our model agrees qualitatively with that of the Aliev-Panfilov model, whereas it is different in the FitzHugh-Nagumo model. In addition, our results based on the stability boundary of the models show oscillating periodic traveling waves, except for the FitzHugh-Nagumo model. (C) 2015 Elsevier Inc. All rights reserved.
机译:我们介绍了可激发介质的反应扩散方程的两变量系统。我们数值研究二维参数平面上周期行波解的存在性和稳定性。我们基于连续方法的结果显示了Eckhaus型的稳定性变化。有两个周期性的行波家族:快和慢。在标准FitzHugh-Nagumo可激发系统的情况下,fast系列稳定。但是,我们观察到快速家庭在我们的模型中变得不稳定。因此,它分叉成一个振荡波。我们通过数值计算周期行波解的基本谱来解释这种现象。此外,我们研究了Aliev-Panfilov激励系统的周期行波解的稳定性,并将其结果与所提出的模型进行了比较。我们表明,我们的模型的稳定性边界在质量上与Aliev-Panfilov模型的边界一致,而在FitzHugh-Nagumo模型中则不同。另外,基于模型稳定性边界的结果表明,除了FitzHugh-Nagumo模型之外,还存在振荡的周期性行波。 (C)2015 Elsevier Inc.保留所有权利。

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