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全局耦合振子群的集体节奏之间的相位同步:噪声相同的情况。

Phase synchronization between collective rhythms of globally coupled oscillator groups: noisy identical case.

机构信息

Institute for Research on Earth Evolution, Japan Agency for Marine-Earth Science and Technology, Yokohama 236-0001, Japan.

出版信息

Chaos. 2010 Dec;20(4):043109. doi: 10.1063/1.3491344.

Abstract

We theoretically investigate the collective phase synchronization between interacting groups of globally coupled noisy identical phase oscillators exhibiting macroscopic rhythms. Using the phase reduction method, we derive coupled collective phase equations describing the macroscopic rhythms of the groups from microscopic Langevin phase equations of the individual oscillators via nonlinear Fokker-Planck equations. For sinusoidal microscopic coupling, we determine the type of the collective phase coupling function, i.e., whether the groups exhibit in-phase or antiphase synchronization. We show that the macroscopic rhythms can exhibit effective antiphase synchronization even if the microscopic phase coupling between the groups is in-phase, and vice versa. Moreover, near the onset of collective oscillations, we analytically obtain the collective phase coupling function using center-manifold and phase reductions of the nonlinear Fokker-Planck equations.

摘要

我们从理论上研究了表现出宏观节律的全局耦合噪声相同相位振荡器相互作用组之间的集体相位同步。我们使用相还原方法,通过非线性福克-普朗克方程,从个体振荡器的微观朗之万相方程推导出描述组的宏观节律的耦合集体相方程。对于正弦微观耦合,我们确定了集体相耦合函数的类型,即组是否表现出同相或反相同步。我们表明,即使组之间的微观相位耦合是同相的,宏观节律也可以表现出有效的反相同步,反之亦然。此外,在集体振荡开始时,我们使用非线性福克-普朗克方程的中心流形和相还原,对集体相耦合函数进行了分析。

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