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Propagation of travelling waves in sub-excitable systems driven by noise and periodic forcing

机译:在噪声和周期强迫驱动下的亚激励系统中行波的传播

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摘要

It has been reported that traveling waves propagate periodically and stably in sub-excitable systems driven by noise [Phys. Rev. Lett. 88, 138301 (2002)]. As a further investigation, here we observe different types of traveling waves under different noises and periodic forces, using a simplified Oregonator model. Depending on different noises and periodic forces, we have observed different types of wave propagation (or their disappearance). Moreover, reversal phenomena are observed in this system based on the numerical experiments in the one-dimensional space. We explain this as an effect of periodic forces. Thus, we give qualitative explanations for how stable reversal phenomena appear, which seem to arise from the mixing function of the periodic force and the noise. The output period and three velocities (normal, positive and negative) of the travelling waves are defined and their relationship with the periodic forces, along with the types of waves, are also studied in sub-excitable system under a fixed noise intensity.
机译:据报道,行波在由噪声驱动的次激励系统中周期性且稳定地传播。牧师88,138301(2002)]。作为进一步的研究,在这里,我们使用简化的Oregonator模型观察在不同噪声和周期性作用力下的不同类型的行波。根据不同的噪声和周期性力,我们观察到了不同类型的波传播(或其消失)。此外,基于一维空间中的数值实验,在该系统中观察到了反转现象。我们将其解释为周期性力的影响。因此,我们定性地解释了如何出现稳定的反转现象,这种反转现象似乎是由周期性力和噪声的混合函数引起的。定义了行波的输出周期和三个速度(法向,正向和负向),并在固定噪声强度下,在亚激励系统中研究了它们与周期力的关系以及波的类型。

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