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- W4380486162 abstract "We study the coevolutionary dynamics of network topology and social complex contagion using a threshold cascade model. Our coevolving threshold model incorporates two mechanisms: the threshold mechanism for the spreading of a minority state such as a new opinion, idea, or innovation and the network plasticity, implemented as the rewiring of links to cut the connections between nodes in different states. Using numerical simulations and a mean-field theoretical analysis, we demonstrate that the coevolutionary dynamics can significantly affect the cascade dynamics. The domain of parameters, i.e., the threshold and mean degree, for which global cascades occur shrinks with an increasing network plasticity, indicating that the rewiring process suppresses the onset of global cascades. We also found that during evolution, non-adopting nodes form denser connections, resulting in a wider degree distribution and a non-monotonous dependence of cascades sizes on plasticity." @default.
- W4380486162 created "2023-06-14" @default.
- W4380486162 creator A5060753814 @default.
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- W4380486162 date "2023-06-13" @default.
- W4380486162 modified "2023-09-30" @default.
- W4380486162 title "Threshold Cascade Dynamics in Coevolving Networks" @default.
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- W4380486162 doi "https://doi.org/10.3390/e25060929" @default.
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