In finite-size adaptive networks with delays, heterogeneous nucleation produces single-step or multi-step synchronization transitions controlled by delay magnitude and frequency distribution class, with an analytical upper bound for two-cluster states.
Sch¨ oll, Nonequilibrium phase transitions in semicon- ductors: self-organization induced by generation and re- combination processes, (2012)
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Delay-Controlled Heterogeneous Nucleation in Adaptive Dynamical Networks
In finite-size adaptive networks with delays, heterogeneous nucleation produces single-step or multi-step synchronization transitions controlled by delay magnitude and frequency distribution class, with an analytical upper bound for two-cluster states.