中国物理B ›› 2007, Vol. 16 ›› Issue (4): 955-961.doi: 10.1088/1009-1963/16/4/017
李延龙1, 马军2, 应和平3
Ma Jun(马军)a)b)† , Ying He-Ping(应和平)b), and Li Yan-Long(李延龙)a)
摘要: In this paper, an intermittent local electric shock scheme is proposed to suppress stable spiral waves in the Barkley model by a weak electric shock (about 0.4 to 0.7) imposed on a random selected n×n grids (n=1-5, compared with the original 256×256 lattice) and monitored synchronically the evolutions of the activator on the grids as the sampled signal of the activator steps out a given threshold (i.e., the electric shock works on the n×n grids if the activator u\leq0.4 or u \geq 0.8). The numerical simulations show that a breakup of spiral is observed in the media state evolution to finally obtain homogeneous states if the electric shock with appropriate intensity is imposed.
中图分类号: (Nonlinear dynamics and chaos)