4.6 Article

Swarmalators under competitive time-varying phase interactions

期刊

NEW JOURNAL OF PHYSICS
卷 24, 期 4, 页码 -

出版社

IOP Publishing Ltd
DOI: 10.1088/1367-2630/ac5da2

关键词

swarmalators; time-varying couplings; synchronization; competitive phase coupling

资金

  1. Council of Scientific and Industrial Research (CSIR) [09/093(0194)/2020-EMR-I]
  2. Slovenian Research Agency [P1-0403, J1-2457, J1-9112]

向作者/读者索取更多资源

This article introduces the characteristics of Swarmalators and the time-varying competitive interaction among them, explores various asymptotic states, and analyzes the occurrence conditions of different static synchronization states. In addition, the appearance of static ring phase wave state is described, and the feasibility of the model is validated.
Swarmalators are entities with the simultaneous presence of swarming and synchronization that reveal emergent collective behavior due to the fascinating bidirectional interplay between phase and spatial dynamics. Although different coupling topologies have already been considered, here we introduce time-varying competitive phase interaction among swarmalators where the underlying connectivity for attractive and repulsive coupling varies depending on the vision (sensing) radius. Apart from investigating some fundamental properties like conservation of center of position and collision avoidance, we also scrutinize the cases of extreme limits of vision radius. The concurrence of attractive-repulsive competitive phase coupling allows the exploration of diverse asymptotic states, like static pi, and mixed phase wave states, and we explore the feasible routes of those states through a detailed numerical analysis. In sole presence of attractive local coupling, we reveal the occurrence of static cluster synchronization where the number of clusters depends crucially on the initial distribution of positions and phases of each swarmalator. In addition, we analytically calculate the sufficient condition for the emergence of the static synchronization state. We further report the appearance of the static ring phase wave state and evaluate its radius theoretically. Finally, we validate our findings using Stuart-Landau oscillators to describe the phase dynamics of swarmalators subject to attractive local coupling.

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