Interdisciplinary Center for Dynamics of Complex Systems, University of Potsdam, D-14469 Potsdam, Germany.
Chaos. 2010 Jun;20(2):023132. doi: 10.1063/1.3456937.
We use a set of qualitatively different models of coupled oscillators (genetic, membrane, Ca-metabolism, and chemical oscillators) to study dynamical regimes in the presence of small detuning. In particular, we focus on a distinct oscillation quenching mechanism, the oscillation death phenomenon. Using bifurcation analysis in general, we demonstrate that under strong coupling via slow variable detuning can eliminate standard oscillatory solutions from a large region of the parameter space, establishing the dominance of oscillation death. We argue furthermore that the oscillation death dominance effect provides a reliable dynamical control mechanism in the general case of N coupled oscillators.
我们使用了一组性质不同的耦合振荡器模型(遗传、膜、钙代谢和化学振荡器)来研究小失谐情况下的动力学状态。特别是,我们关注一种独特的振子猝灭机制,即振子死亡现象。我们使用分岔分析的方法,证明了在慢变量失谐的强耦合作用下,可以从参数空间的一个大区域消除标准的振荡解,从而确立了振子死亡的主导地位。我们进一步认为,在一般的 N 个耦合振子情况下,振子死亡主导效应提供了一种可靠的动力学控制机制。