Connecting minimal chimeras and fully asymmetric chaotic attractors through equivariant pitchfork bifurcations.
basic_science · Level V
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- Record sourced from PubMed, PMID 34271668.
- Also identified by DOI 10.1103/PhysRevE.103.L060201.
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Abstract
Highly symmetric networks can exhibit partly symmetry-broken states, including clusters and chimera states, i.e., states of coexisting synchronized and unsynchronized elements. We address the S_{4} permutation symmetry of four globally coupled Stuart-Landau oscillators and uncover an interconnected web of solutions with different symmetries. Among these are chaotic 2-1-1 minimal chimeras that arise from 2-1-1 periodic solutions in a period-doubling cascade, as well as fully asymmetric chaotic states arising similarly from periodic 1-1-1-1 solutions. A backbone of equivariant pitchfork bifurcations mediate between the two cascades, culminating in equivariant pitchforks of chaotic attractors.