School of Physics, Korea Institute for Advanced Study, 130-722 Seoul, Korea.
Chaos. 2011 Jun;21(2):025106. doi: 10.1063/1.3596698.
We explore the synchronization behavior in interdependent systems, where the one-dimensional (1D) network (the intranetwork coupling strength J(I)) is ferromagnetically intercoupled (the strength J) to the Watts-Strogatz (WS) small-world network (the intranetwork coupling strength J(II)). In the absence of the internetwork coupling (J=0), the former network is well known not to exhibit the synchronized phase at any finite coupling strength, whereas the latter displays the mean-field transition. Through an analytic approach based on the mean-field approximation, it is found that for the weakly coupled 1D network (J(I)≪1) the increase of J suppresses synchrony, because the nonsynchronized 1D network becomes a heavier burden for the synchronization process of the WS network. As the coupling in the 1D network becomes stronger, it is revealed by the renormalization group (RG) argument that the synchronization is enhanced as J(I) is increased, implying that the more enhanced partial synchronization in the 1D network makes the burden lighter. Extensive numerical simulations confirm these expected behaviors, while exhibiting a reentrant behavior in the intermediate range of J(I). The nonmonotonic change of the critical value of J(II) is also compared with the result from the numerical RG calculation.
我们探索了相依系统中的同步行为,其中一维(1D)网络(内部网络耦合强度 J(I))铁磁耦合(强度 J)到 Watts-Strogatz(WS)小世界网络(内部网络耦合强度 J(II))。在不存在网络间耦合(J=0)的情况下,众所周知,前一个网络在任何有限的耦合强度下都不会表现出同步相位,而后者则表现出平均场相变。通过基于平均场近似的解析方法,发现对于弱耦合的 1D 网络(J(I)≪1),J 的增加会抑制同步,因为非同步的 1D 网络会对 WS 网络的同步过程造成更大的负担。随着 1D 网络中的耦合变强,重整化群(RG)论证表明,随着 J(I)的增加,同步会增强,这意味着 1D 网络中增强的部分同步会减轻负担。广泛的数值模拟证实了这些预期的行为,同时在 J(I)的中间范围内表现出再入行为。还将 J(II)的临界值的非单调变化与数值 RG 计算的结果进行了比较。