Gutiérrez R, Sevilla-Escoboza R, Piedrahita P, Finke C, Feudel U, Buldú J M, Huerta-Cuellar G, Jaimes-Reátegui R, Moreno Y, Boccaletti S
Department of Chemical Physics, The Weizmann Institute of Science, Rehovot 76100, Israel.
Centro Universitario de los Lagos, Universidad de Guadalajara, Lagos de Moreno, Jalisco 47460, Mexico and Complex Systems Group, Universidad Rey Juan Carlos, 28933 Móstoles, Madrid, Spain.
Phys Rev E Stat Nonlin Soft Matter Phys. 2013 Nov;88(5):052908. doi: 10.1103/PhysRevE.88.052908. Epub 2013 Nov 14.
We demonstrate the existence of generalized synchronization in systems that act as mediators between two dynamical units that, in turn, show complete synchronization with each other. These are the so-called relay systems. Specifically, we analyze the Lyapunov spectrum of the full system to elucidate when complete and generalized synchronization appear. We show that once a critical coupling strength is achieved, complete synchronization emerges between the systems to be synchronized, and at the same point, generalized synchronization with the relay system also arises. Next, we use two nonlinear measures based on the distance between phase-space neighbors to quantify the generalized synchronization in discretized time series. Finally, we experimentally show the robustness of the phenomenon and of the theoretical tools here proposed to characterize it.
我们证明了在充当两个动力学单元之间媒介的系统中存在广义同步,这两个动力学单元彼此之间呈现完全同步。这些就是所谓的中继系统。具体而言,我们分析整个系统的李雅普诺夫谱,以阐明完全同步和广义同步何时出现。我们表明,一旦达到临界耦合强度,待同步的系统之间就会出现完全同步,同时,与中继系统的广义同步也会出现。接下来,我们使用基于相空间相邻点之间距离的两种非线性度量来量化离散时间序列中的广义同步。最后,我们通过实验证明了该现象以及此处提出的用于表征它的理论工具的鲁棒性。