Nekhamkina Olga, Sheintuch Moshe
Department of Chemical Engineering, Technion, Israel Institute of Technology, Haifa 32000, Israel.
Phys Rev E Stat Nonlin Soft Matter Phys. 2007 May;75(5 Pt 2):056210. doi: 10.1103/PhysRevE.75.056210. Epub 2007 May 18.
The present work extends our recently published study [Phys. Rev. E 73, 066224 (2006)] on a mechanism of pattern formation in excitable media due to inhomogeneous boundary conditions (BC). To that end, we analyze a pair of coupled excitable and oscillatory cells, a distributed FitzHugh Nagumo model, and a distributed five-variable model that describes CO catalytic oxidation. For the three systems we determine the structure of the oscillatory domains, composed of bands of complex firing solutions with period-adding bifurcations, and show the commonality of the structures. The obtained results account for the recently reported experimental observations of mixed-mode oscillations showing a period-adding bifurcation during CO oxidation on a disk-shaped catalytic cloth with imposed cold temperature BC.
目前的工作扩展了我们最近发表的关于由于非均匀边界条件(BC)导致可激发介质中图案形成机制的研究[《物理评论E》73, 066224 (2006)]。为此,我们分析了一对耦合的可激发和振荡细胞、一个分布式FitzHugh-Nagumo模型以及一个描述CO催化氧化的分布式五变量模型。对于这三个系统,我们确定了振荡域的结构,其由具有周期增加分岔的复杂放电解带组成,并展示了这些结构的共性。所获得的结果解释了最近报道的实验观察结果,即在施加低温BC的盘状催化布上进行CO氧化期间显示出周期增加分岔的混合模式振荡。