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FitzHugh-Nagumo 振荡器与两个时滞的极端事件耦合。

Extreme events in FitzHugh-Nagumo oscillators coupled with two time delays.

机构信息

Theoretical Physics/Complex Systems, ICBM, University of Oldenburg, 26129 Oldenburg, Germany.

出版信息

Phys Rev E. 2017 Jun;95(6-1):062219. doi: 10.1103/PhysRevE.95.062219. Epub 2017 Jun 22.

Abstract

We study two identical FitzHugh-Nagumo oscillators which are coupled with one or two different time delays. If only a single-delay coupling is used, the length of the delay determines whether the synchronization manifold is transversally stable or unstable, exhibiting mixed-mode or chaotic oscillations in which the small amplitude oscillations are always in phase but the large amplitude oscillations are in phase or out of phase, respectively. For two delays we find an intricate dynamics which comprises an irregular alteration of small amplitude oscillations, in-phase and out-of-phase large amplitude oscillations, also called extreme events. This transient chaotic dynamics is sandwiched between a bubbling transition and a blowout bifurcation.

摘要

我们研究了两个相同的 FitzHugh-Nagumo 振荡器,它们通过一个或两个不同的时滞进行耦合。如果只使用单个时滞耦合,则延迟的长度决定了同步流形是横向稳定还是不稳定,表现出混合模式或混沌振荡,其中小振幅振荡始终同相,但大振幅振荡分别同相或异相。对于两个时滞,我们发现了一种复杂的动力学,包括小振幅振荡、同相和异相大振幅振荡的不规则变化,也称为极端事件。这种瞬态混沌动力学夹在起泡跃迁和爆发分岔之间。

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