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Emergence of hysteresis loop in social contagions on complex networks

机译:复杂网络中社会传染中的磁滞回线的出现

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摘要

Understanding the spreading mechanisms of social contagions in complex network systems has attracted much attention in the physics community. Here we propose a generalized threshold model to describe social contagions. Using extensive numerical simulations and theoretical analyses, we find that a hysteresis loop emerges in the system. Specifically, the steady state of the system is sensitive to the initial conditions of the dynamics of the system. In the steady state, the adoption size increases discontinuously with the transmission probability of information about social contagions, and trial size exhibits a non-monotonic pattern, i.e., it first increases discontinuously then decreases continuously. Finally we study social contagions on heterogeneous networks and find that network topology does not qualitatively affect our results.
机译:了解复杂网络系统中社会传染的传播机制已引起物理学界的广泛关注。在这里,我们提出了一个广义的阈值模型来描述社会传染。使用大量的数值模拟和理论分析,我们发现系统中出现了磁滞回线。具体而言,系统的稳定状态对系统动力学的初始条件敏感。在稳定状态下,收养规模随着有关社会传染信息的传递概率而间断地增加,并且试验规模呈现出非单调的模式,即先是间断地增加,然后连续地减小。最后,我们研究了异构网络上的社会传染,并发现网络拓扑不会对我们的结果产生定性影响。

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