Ciszak M, Montina A, Arecchi F T
C.N.R.-Istituto Nazionale di Ottica Applicata, L.go E. Fermi 6, 50125, Florence, Italy.
Cogn Process. 2009 Feb;10 Suppl 1:S33-9. doi: 10.1007/s10339-008-0235-x. Epub 2008 Oct 21.
We study how a locally coupled array of spiking chaotic systems synchronizes to an external driving in a short time. Synchronization means spike separation at adjacent sites much shorter than the average inter-spike interval; a local lack of synchronization is called a defect. The system displays sudden spontaneous defect disappearance at a critical coupling strength suggesting an existence of a phase transition. Below critical coupling, the system reaches order at a definite amplitude of an external input; this order persists for a fixed time slot. Thus, the array behaves as an excitable-like system, even though the single element lacks such a property.
我们研究了一个由尖峰混沌系统组成的局部耦合阵列如何在短时间内与外部驱动同步。同步意味着相邻位点的尖峰间隔远短于平均尖峰间隔;局部缺乏同步被称为缺陷。该系统在临界耦合强度下会突然自发地出现缺陷消失,这表明存在相变。在临界耦合以下,系统在外部输入的特定幅度下达到有序;这种有序会持续固定的时间段。因此,即使单个元件不具备这种特性,该阵列的行为却类似可激发系统。