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Crossing the quasi-threshold manifold of a noise-driven excitable system

机译:穿越噪声驱动的可激励系统的准阈值流形

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摘要

We consider the noise-induced escapes in an excitable system possessing a quasi-threshold manifold, along which there exists a certain point of minimal quasi-potential. In the weak noise limit, the optimal escaping path turns out to approach this particular point asymptotically, making it analogous to an ordinary saddle. Numerical simulations are performed and an elaboration on the effect of small but finite noise is given, which shows that the ridges where the prehistory probability distribution peaks are located mainly within the region where the quasi-potential increases gently. The cases allowing anisotropic noise are discussed and we found that varying the noise term in the slow variable would dramatically raise the whole level of quasi-potentials, leading to significant changes in both patterns of optimal paths and exit locations.
机译:我们认为,在具有准阈值流形的可激励系统中,噪声诱发的逸出具有一定的最小准电位。在弱噪声限制下,最佳逃逸路径最终渐近逼近此特定点,使其类似于普通鞍座。进行了数值模拟,并对小而有限的噪声的影响进行了详细说明,结果表明,史前概率分布峰值所在的山脊主要位于准电位逐渐增大的区域内。讨论了允许各向异性噪声的情况,我们发现改变慢变量中的噪声项会显着提高整个准电位水平,从而导致最佳路径和出口位置的模式发生重大变化。

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