Expected and unexpected routes to synchronization in a system of swarmalators.

IF 2.4 3区 物理与天体物理 Q2 PHYSICS, FLUIDS & PLASMAS Physical Review E Pub Date : 2024-12-01 DOI:10.1103/PhysRevE.110.L062301
Steve J Kongni, Thierry Njougouo, Patrick Louodop, Robert Tchitnga, Fernando F Ferreira, Hilda A Cerdeira
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Abstract

Systems of oscillators whose internal phases and spatial dynamics are coupled, swarmalators, present diverse collective behaviors which in some cases lead to explosive synchronization in a finite population as a function of the coupling parameter between internal phases. Near the synchronization transition, the phase energy of the particles is represented by the XY model, and they undergo a transition which can be of the first order or the second depending on the distribution of natural frequencies of their internal dynamics. The first-order transition is obtained after an intermediate state (static wings phase wave state) from which the nodes, in cascade over time, achieve complete phase synchronization at a precise value of the coupling constant. For a particular case of natural frequencies distribution, a new phenomenon, the rotational splintered phase wave state, is observed and leads progressively to synchronization through clusters switching alternatively from one to two and for which the frequency decreases as the phase coupling increases.

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在蚁群系统中预期的和意外的同步路径。
内部相位和空间动力学耦合的振子系统(群集)表现出不同的集体行为,在某些情况下,这些集体行为作为内部相位之间耦合参数的函数导致有限种群中的爆炸同步。在同步跃迁附近,粒子的相能用XY模型表示,根据其内部动力学的固有频率分布,它们经历的跃迁可以是一阶或二阶。一阶跃迁是在一个中间状态(静翼相波状态)之后获得的,在这个中间状态下,节点随着时间的推移,在一个精确的耦合常数值上实现完全的相位同步。对于固有频率分布的一种特殊情况,观察到一种新的现象,即旋转分裂相波状态,并通过从一到二交替切换的簇逐步导致同步,并且随着相位耦合的增加,频率降低。
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来源期刊
Physical Review E
Physical Review E PHYSICS, FLUIDS & PLASMASPHYSICS, MATHEMAT-PHYSICS, MATHEMATICAL
CiteScore
4.50
自引率
16.70%
发文量
2110
期刊介绍: Physical Review E (PRE), broad and interdisciplinary in scope, focuses on collective phenomena of many-body systems, with statistical physics and nonlinear dynamics as the central themes of the journal. Physical Review E publishes recent developments in biological and soft matter physics including granular materials, colloids, complex fluids, liquid crystals, and polymers. The journal covers fluid dynamics and plasma physics and includes sections on computational and interdisciplinary physics, for example, complex networks.
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