Hong Hyunsuk, Strogatz Steven H
Department of Physics, Chonbuk National University, Jeonju, Korea.
Phys Rev E Stat Nonlin Soft Matter Phys. 2012 May;85(5 Pt 2):056210. doi: 10.1103/PhysRevE.85.056210. Epub 2012 May 23.
We consider a variant of the Kuramoto model of coupled oscillators in which both attractive and repulsive pairwise interactions are allowed. The sign of the coupling is assumed to be a characteristic of a given oscillator. Specifically, some oscillators repel all the others, thus favoring an antiphase relationship with them. Other oscillators attract all the others, thus favoring an in-phase relationship. The Ott-Antonsen ansatz is used to derive the exact low-dimensional dynamics governing the system's long-term macroscopic behavior. The resulting analytical predictions agree with simulations of the full system. We explore the effects of changing various parameters, such as the width of the distribution of natural frequencies and the relative strengths and proportions of the positive and negative interactions. For the particular model studied here we find, unexpectedly, that the mixed interactions produce no new effects. The system exhibits conventional mean-field behavior and displays a second-order phase transition like that found in the original Kuramoto model. In contrast to our recent study of a different model with mixed interactions [Phys. Rev. Lett. 106, 054102 (2011)], the π state and traveling-wave state do not appear for the coupling type considered here.
我们考虑了耦合振子的Kuramoto模型的一个变体,其中允许吸引和排斥的成对相互作用。耦合的符号被假定为给定振子的一个特征。具体而言,一些振子排斥所有其他振子,因此倾向于与它们形成反相位关系。其他振子吸引所有其他振子,因此倾向于形成同相位关系。使用Ott-Antonsen假设来推导控制系统长期宏观行为的精确低维动力学。所得的分析预测与完整系统的模拟结果一致。我们探讨了改变各种参数的影响,例如自然频率分布的宽度以及正负相互作用的相对强度和比例。对于这里研究的特定模型,我们意外地发现,混合相互作用不会产生新的效应。该系统表现出传统的平均场行为,并显示出与原始Kuramoto模型中发现的类似的二阶相变。与我们最近对具有混合相互作用的不同模型的研究[《物理评论快报》106, 054102 (2011)]相反,这里考虑的耦合类型不会出现π态和行波态。