Chowdhury Debanjan, Cross M C
Department of Physics, California Institute of Technology, Pasadena, California 91125, USA.
Phys Rev E Stat Nonlin Soft Matter Phys. 2010 Jul;82(1 Pt 2):016205. doi: 10.1103/PhysRevE.82.016205. Epub 2010 Jul 9.
We present analytical calculations and numerical simulations for the synchronization of oscillators interacting via a long-range power law interaction on a one-dimensional lattice. We have identified the critical value of the power law exponent α(c) across which a transition from a synchronized to an unsynchronized state takes place for a sufficiently strong but finite coupling strength in the large system limit. We find α(c)=3/2. Frequency entrainment and phase ordering are discussed as a function of α≥1 . The calculations are performed using an expansion about the aligned phase state (spin-wave approximation) and a coarse graining approach. We also generalize the spin-wave results to the d -dimensional problem.
我们给出了通过一维晶格上的长程幂律相互作用相互作用的振荡器同步的解析计算和数值模拟。我们确定了幂律指数α(c)的临界值,在大系统极限下,对于足够强但有限的耦合强度,跨越该临界值会发生从同步状态到非同步状态的转变。我们发现α(c)=3/2。讨论了频率锁定和相位排序作为α≥1的函数。计算是使用关于对齐相位状态的展开(自旋波近似)和粗粒化方法进行的。我们还将自旋波结果推广到d维问题。