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从平均场诱导死亡中恢复振荡:理论与实验

Revival of oscillation from mean-field-induced death: Theory and experiment.

作者信息

Ghosh Debarati, Banerjee Tanmoy, Kurths Jürgen

机构信息

Department of Physics, University of Burdwan, Burdwan 713 104, West Bengal, India.

Potsdam Institute for Climate Impact Research, Telegraphenberg, D-14415 Potsdam, Germany.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2015 Nov;92(5):052908. doi: 10.1103/PhysRevE.92.052908. Epub 2015 Nov 12.

Abstract

The revival of oscillation and maintaining rhythmicity in a network of coupled oscillators offer an open challenge to researchers as the cessation of oscillation often leads to a fatal system degradation and an irrecoverable malfunctioning in many physical, biological, and physiological systems. Recently a general technique of restoration of rhythmicity in diffusively coupled networks of nonlinear oscillators has been proposed in Zou et al. [Nat. Commun. 6, 7709 (2015)], where it is shown that a proper feedback parameter that controls the rate of diffusion can effectively revive oscillation from an oscillation suppressed state. In this paper we show that the mean-field diffusive coupling, which can suppress oscillation even in a network of identical oscillators, can be modified in order to revoke the cessation of oscillation induced by it. Using a rigorous bifurcation analysis we show that, unlike other diffusive coupling schemes, here one has two control parameters, namely the density of the mean-field and the feedback parameter that can be controlled to revive oscillation from a death state. We demonstrate that an appropriate choice of density of the mean field is capable of inducing rhythmicity even in the presence of complete diffusion, which is a unique feature of this mean-field coupling that is not available in other coupling schemes. Finally, we report the experimental observation of revival of oscillation from the mean-field-induced oscillation suppression state that supports our theoretical results.

摘要

在耦合振荡器网络中恢复振荡并维持节律性,这对研究人员来说是一个开放性挑战,因为在许多物理、生物和生理系统中,振荡的停止往往会导致致命的系统退化和不可恢复的故障。最近,邹等人[《自然·通讯》6, 7709 (2015)]提出了一种在非线性振荡器的扩散耦合网络中恢复节律性的通用技术,其中表明控制扩散速率的适当反馈参数可以有效地使振荡从抑制状态恢复。在本文中,我们表明,即使在相同振荡器的网络中也能抑制振荡的平均场扩散耦合,可以进行修改以消除由其引起的振荡停止。通过严格的分岔分析,我们表明,与其他扩散耦合方案不同,这里有两个控制参数,即平均场密度和反馈参数,可以控制它们使振荡从死亡状态恢复。我们证明,即使在完全扩散的情况下,适当选择平均场密度也能够诱导节律性,这是这种平均场耦合的独特特征,其他耦合方案中没有。最后,我们报告了从平均场诱导的振荡抑制状态恢复振荡的实验观察结果,这支持了我们的理论结果。

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