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Dynamics of globally coupled noisy excitable elements: the fitzhugh-nagumo case

机译:全球耦合嘈杂兴奋元素的动态:Fitzhugh-Nagumo案例

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We study the noisy FitzHugh-Nagumo model in the presence of an external sinusoidal driving force. We derive a Fokker-Planck equation for both the single element and for the globally coupled system. We introduce an efficient way to numerically solve this Fokker-Planck equation and show that the external driving force leads to a classical resonance when its frequency matches the underlying systems frequency. This resonance is also investigated analytically by exploiting the different timescales in the problem. Agreement between the analytical results and numerical results is excellent and reveals the existence of a stochastic bifurcation.
机译:我们在存在外部正弦驱动力的情况下研究嘈杂的Fitzhugh-Nagumo模型。我们为单个元素和全局耦合系统获得Fokker-Planck方程。我们介绍了在数值上解决此Fokker-Planck方程的有效方法,并显示外部驱动力在其频率与底层系统频率匹配时导致经典的共振。通过利用问题中的不同时间尺度,还通过分析进行了分析研究了这种共振。分析结果和数值结果之间的协议是优异的,揭示了随机分叉的存在。

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