Hong H, Choi M Y, Kim Beom Jun
Department of Physics and Center for Theoretical Physics, Seoul National University, Seoul 151-747, Korea.
Phys Rev E Stat Nonlin Soft Matter Phys. 2002 Feb;65(2 Pt 2):026139. doi: 10.1103/PhysRevE.65.026139. Epub 2002 Jan 24.
We investigate collective synchronization in a system of coupled oscillators on small-world networks. The order parameters that measure synchronization of phases and frequencies are introduced and analyzed by means of dynamic simulations and finite-size scaling. Phase synchronization is observed to emerge in the presence of even a tiny fraction P of shortcuts and to display saturated behavior for P > or similar to 0.5. This indicates that the same synchronizability as the random network (P=1) can be achieved with relatively small number of shortcuts. The transient behavior of the synchronization, obtained from the measurement of the relaxation time, is also discussed.
我们研究了小世界网络上耦合振子系统中的集体同步。通过动态模拟和有限尺寸标度,引入并分析了测量相位和频率同步的序参量。观察到即使存在极小比例P的捷径,相位同步也会出现,并且当P>或近似于0.5时表现出饱和行为。这表明使用相对较少数量的捷径就能实现与随机网络(P = 1)相同的同步性。还讨论了从弛豫时间测量中获得的同步的瞬态行为。