Weak multiplexing in neural networks: Switching between chimera and solitary states
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Publication:4627646
DOI10.1063/1.5057418zbMath1409.34070arXiv1809.07148OpenAlexW3099807373WikidataQ92054471 ScholiaQ92054471MaRDI QIDQ4627646
Anna Zakharova, Maria Mikhaylenko, Sarika Jalan, Lukas Ramlow
Publication date: 11 March 2019
Published in: Chaos: An Interdisciplinary Journal of Nonlinear Science (Search for Journal in Brave)
Full work available at URL: https://arxiv.org/abs/1809.07148
Nonlinear oscillations and coupled oscillators for ordinary differential equations (34C15) Qualitative investigation and simulation of models involving functional-differential equations (34K60)
Related Items (18)
Delay engineered solitary states in complex networks ⋮ Control of coherence resonance in multiplex neural networks ⋮ Solitary states in multiplex neural networks: onset and vulnerability ⋮ Interplay between solitary states and chimeras in multiplex neural networks ⋮ Anti-phase synchronization of waves in a multiplex network of van der Pol oscillators ⋮ Controlling chimera and solitary states by additive noise in networks of chaotic maps ⋮ Relay and complete synchronization in heterogeneous multiplex networks of chaotic maps ⋮ Synchronization of spiral wave patterns in two-layer 2D lattices of nonlocally coupled discrete oscillators ⋮ Chimeras in multivariable coupled Rössler oscillators ⋮ Symmetry broken states in an ensemble of globally coupled pendulums ⋮ Control of inter-layer synchronization by multiplexing noise ⋮ Chimeras ⋮ Features of the Synchronization of Spiral Wave Structures in Interacting Lattices of Nonlocally Coupled Maps ⋮ The Multiplex Decomposition: An Analytic Framework for Multilayer Dynamical Networks ⋮ Multi-headed loop chimera states in coupled oscillators ⋮ Solitary states and solitary state chimera in neural networks ⋮ Spatiotemporal patterns in a 2D lattice with linear repulsive and nonlinear attractive coupling ⋮ Solitary states and partial synchrony in oscillatory ensembles with attractive and repulsive interactions
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