Describing synchronization and topological excitations in arrays of magnetic spin torque oscillators through the Kuramoto model. [PDF]
Flovik V, Macià F, Wahlström E.
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Frustrated Synchronization of the Kuramoto Model on Complex Networks. [PDF]
Ódor G, Deng S, Kelling J.
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How synaptic function controls critical transitions in spiking neuron networks: insight from a Kuramoto model reduction. [PDF]
Smirnov LA +4 more
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Kuramoto model simulation of neural hubs and dynamic synchrony in the human cerebral connectome. [PDF]
Schmidt R +4 more
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The Kuramoto model for Synchronization
The aim of this project is to reformulate Kuramoto's equations for N-coupled oscilla-tors in a cycle limited boundary, both for the noise-free case (D = 0) and for the noisy one (D6=0). We will see that solving integro-differential equations is needed to finally get the approximate value of Kc, which sets the phase transition. To prove this phenomena I
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Exact solution for first-order synchronization transition in a generalized Kuramoto model. [PDF]
Hu X +6 more
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Physiologically motivated multiplex Kuramoto model describes phase diagram of cortical activity. [PDF]
Sadilek M, Thurner S.
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Low-dimensional behavior of Kuramoto model with inertia in complex networks. [PDF]
Ji P, Peron TK, Rodrigues FA, Kurths J.
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Kuramoto model with coupling through an external medium. [PDF]
Schwab DJ, Plunk GG, Mehta P.
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Evolutionary Kuramoto dynamics unravels origins of chimera states in neural populations. [PDF]
Zdyrski T, Pauls S, Fu F.
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