Sahoo Samir, Tadić Bosiljka, Chutani Malayaja, Gupte Neelima
Department of Applied Mechanics, Indian Institute of Technology Madras, Chennai 600036, India.
Center for Complex Systems & Dynamics, Indian Institute of Technology Madras, Chennai 600036, India.
Phys Rev E. 2023 Sep;108(3-1):034309. doi: 10.1103/PhysRevE.108.034309.
The hidden geometry of simplicial complexes can influence the collective dynamics of nodes in different ways depending on the simplex-based interactions of various orders and competition between local and global structural features. We study a system of phase oscillators attached to nodes of four-dimensional simplicial complexes and interacting via positive/negative edges-based pairwise K_{1} and triangle-based triple K_{2}≥0 couplings. Three prototypal simplicial complexes are grown by aggregation of 5-cliques, controlled by the chemical affinity parameter ν, resulting in sparse, mixed, and compact architecture, all of which have 1-hyperbolic graphs but different spectral dimensions. By changing the interaction strength K_{1}∈[-4,2] along the forward and backward sweeps, we numerically determine individual phases of each oscillator and a global order parameter to measure the level of synchronization. Our results reveal how different architectures of simplicial complexes, in conjunction with the interactions and internal-frequency distributions, impact the shape of the hysteresis loop and lead to patterns of locally synchronized groups that hinder global network synchronization. Remarkably, these groups are differently affected by the size of the shared faces between neighboring 5-cliques and the presence of higher-order interactions. At K_{1}<0, partial synchronization is much higher in the compact community than in the assemblies of cliques sharing single nodes, at least occasionally. These structures also partially desynchronize at a lower triangle-based coupling K_{2} than the compact assembly. Broadening of the internal frequency distribution gradually reduces the synchronization level in the mixed and sparse communities, even at positive pairwise couplings. The order-parameter fluctuations in these partially synchronized states are quasicyclical with higher harmonics, described by multifractal analysis and broad singularity spectra.
单纯复形的隐藏几何结构可以通过不同方式影响节点的集体动力学,这取决于各种阶次基于单形的相互作用以及局部和全局结构特征之间的竞争。我们研究了一个相位振荡器系统,该系统附着在四维单纯复形的节点上,并通过基于正/负边的成对K₁和基于三角形的三元组K₂≥0耦合进行相互作用。通过化学亲和参数ν控制,由5 - 团簇聚集生长出三种原型单纯复形,从而产生稀疏、混合和紧凑的结构,所有这些结构都具有1 - 双曲图但谱维不同。通过沿正向和反向扫描改变相互作用强度K₁∈[-4,2],我们数值确定每个振荡器的个体相位和一个全局序参量来测量同步水平。我们的结果揭示了单纯复形的不同结构如何与相互作用和内部频率分布相结合,影响滞后回线的形状,并导致局部同步组的模式,这些模式阻碍了全局网络同步。值得注意的是,这些组受到相邻5 - 团簇之间共享面的大小和高阶相互作用的存在的不同影响。在K₁<0时,紧凑群落中的部分同步比至少偶尔共享单个节点的团簇集合中的部分同步要高得多。这些结构在基于三角形的耦合K₂低于紧凑集合时也会部分去同步。即使在正的成对耦合下,内部频率分布的拓宽也会逐渐降低混合和稀疏群落中的同步水平。这些部分同步状态下的序参量波动是具有高次谐波的准周期波动,由多重分形分析和宽奇点谱描述。