Lim Woochang, Kim Sang-Yoon
Department of Physics, Kangwon National University, Chunchon, Kangwon-Do 200-701, Korea.
Phys Rev E Stat Nonlin Soft Matter Phys. 2005 Mar;71(3 Pt 2A):036221. doi: 10.1103/PhysRevE.71.036221. Epub 2005 Mar 24.
We investigate the dynamical mechanism for the partial synchronization in three coupled one-dimensional maps. A completely synchronized attractor on the diagonal becomes transversely unstable via a blowout bifurcation, and then a two-cluster state, exhibiting on-off intermittency, appears on an invariant plane. If the newly created two-cluster state is transversely stable, then partial synchronization occurs on the invariant plane; otherwise, complete desynchronization takes place. It is found that the transverse stability of the intermittent two-cluster state may be determined through the competition between its laminar and bursting components. When the laminar (bursting) component is dominant, partial synchronization (complete desynchronization) occurs through the blowout bifurcation. This mechanism for the occurrence of partial synchronization is also confirmed in three coupled multidimensional invertible systems, such as coupled He non maps and coupled pendula.
我们研究了三个耦合的一维映射中部分同步的动力学机制。对角线上的完全同步吸引子通过爆裂分岔变得横向不稳定,然后在一个不变平面上出现呈现开-关间歇性的双簇状态。如果新产生的双簇状态是横向稳定的,那么在不变平面上就会发生部分同步;否则,就会发生完全去同步。研究发现,间歇性双簇状态的横向稳定性可以通过其层流和爆发分量之间的竞争来确定。当层流(爆发)分量占主导时,通过爆裂分岔会发生部分同步(完全去同步)。这种部分同步发生的机制在三个耦合的多维可逆系统中也得到了证实,例如耦合的He非映射和耦合的摆。