Cosenza M G, Tucci K
Centro de Astrofísica Teórica, Universidad de Los Andes, Apartado Postal 26, La Hechicera, Mérida 5251, Venezuela.
Phys Rev E Stat Nonlin Soft Matter Phys. 2002 Mar;65(3 Pt 2A):036223. doi: 10.1103/PhysRevE.65.036223. Epub 2002 Mar 1.
The transition to turbulence via spatiotemporal intermittency is investigated in the context of coupled maps defined on small-world networks. The local dynamics is given by the Chaté-Manneville minimal map previously used in studies of spatiotemporal intermittency in ordered lattice. The critical boundary separating laminar and turbulent regimes is calculated on the parameter space of the system, given by the coupling strength and the rewiring probability of the network. Windows of relaminarization are present in some regions of the parameter space. New features arise in small-world networks; for instance, the character of the transition to turbulence changes from second-order to a first-order phase transition at some critical value of the rewiring probability. A linear relation characterizing the change in the order of the phase transition is found. The global quantity used as order parameter for the transition also exhibits nontrivial collective behavior for some values of the parameters. These models may describe several processes occurring in nonuniform media where the degree of disorder can be continuously varied through a parameter.
在定义于小世界网络上的耦合映射的背景下,研究了通过时空间歇性向湍流的转变。局部动力学由先前在有序晶格的时空间歇性研究中使用的Chaté-Manneville最小映射给出。在由耦合强度和网络的重新布线概率给出的系统参数空间上,计算了分隔层流和湍流区域的临界边界。在参数空间的某些区域存在再层流化窗口。小世界网络中出现了新的特征;例如,在重新布线概率的某个临界值处,向湍流转变的特征从二阶相变变为一阶相变。发现了表征相变阶数变化的线性关系。用作转变序参量的全局量在某些参数值下也表现出非平凡的集体行为。这些模型可以描述在非均匀介质中发生的几个过程,其中无序程度可以通过一个参数连续变化。