Postnov D E, Sosnovtseva O V, Scherbakov P, Mosekilde E
Physics Department, Saratov State University, Astrakhanskaya Str. 83, Saratov, 410026, Russia.
Chaos. 2008 Mar;18(1):015114. doi: 10.1063/1.2805194.
The purpose of this paper is to study the special forms of multimode dynamics that one can observe in systems with resource-mediated coupling, i.e., systems of self-sustained oscillators in which the coupling takes place via the distribution of primary resources that controls the oscillatory state of the individual unit. With this coupling, a spatially inhomogenous state with mixed high and low-amplitude oscillations in the individual units can arise. To examine generic phenomena associated with this type of interaction we consider a chain of resistively coupled electronic oscillators connected to a common power supply. The two-oscillator system displays antiphase synchronization, and it is interesting to note that two-mode oscillations continue to exist outside of the parameter range in which oscillations occur for the individual unit. At low coupling strengths, the multi-oscillator system shows high dimensional quasiperiodicity with little tendency for synchronization. At higher coupling strengths, one typically observes spatial clustering involving a few oscillating units. We describe three different scenarios according to which the cluster can slide along the chain as the bias voltage changes.
本文的目的是研究在具有资源介导耦合的系统中可以观察到的多模动力学的特殊形式,即自持振荡器系统,其中耦合通过控制单个单元振荡状态的主要资源分布来实现。通过这种耦合,单个单元中会出现高振幅和低振幅振荡混合的空间不均匀状态。为了研究与这种相互作用相关的一般现象,我们考虑一个连接到公共电源的电阻耦合电子振荡器链。双振荡器系统表现出反相同步,值得注意的是,在单个单元发生振荡的参数范围之外,双模振荡仍然存在。在低耦合强度下,多振荡器系统表现出高维准周期性,几乎没有同步趋势。在较高耦合强度下,通常会观察到涉及少数振荡单元的空间聚类。我们描述了三种不同的情况,根据这些情况,随着偏置电压的变化,聚类可以沿着链滑动。