Schmidt Lennart, Schönleber Konrad, Krischer Katharina, García-Morales Vladimir
Physik-Department, Nonequilibrium Chemical Physics, Technische Universität München, James-Franck-Str. 1, D-85748 Garching, Germany.
Chaos. 2014 Mar;24(1):013102. doi: 10.1063/1.4858996.
We report a novel mechanism for the formation of chimera states, a peculiar spatiotemporal pattern with coexisting synchronized and incoherent domains found in ensembles of identical oscillators. Considering Stuart-Landau oscillators, we demonstrate that a nonlinear global coupling can induce this symmetry breaking. We find chimera states also in a spatially extended system, a modified complex Ginzburg-Landau equation. This theoretical prediction is validated with an oscillatory electrochemical system, the electro-oxidation of silicon, where the spontaneous formation of chimeras is observed without any external feedback control.
我们报告了一种关于嵌合态形成的新机制,嵌合态是一种在相同振子集合中发现的具有共存同步和非相干域的特殊时空模式。考虑到斯图尔特 - 朗道振子,我们证明了非线性全局耦合可以诱导这种对称性破缺。我们还在一个空间扩展系统,即修正的复金兹堡 - 朗道方程中发现了嵌合态。这一理论预测在一个振荡电化学系统,即硅的电氧化过程中得到了验证,在该系统中观察到了嵌合体的自发形成,且无需任何外部反馈控制。