Recent violent political extremist events in Brazil and epidemic modeling: The role of a SIS-like model on the understanding of spreading and control of radicalism
arXiv:2303.11953 · doi:10.1142/S0129183124500153
Abstract
In this work we study a simple mathematical model to analyze the emergence and control of radicalization phenomena, motivated by the recent far-right extremist events in Brazil, occurred in January 8, 2023. For this purpose, we considered a compartmental SIS-like model that takes into account only the right electors, for simplicity. The model considers radical and moderated right electors, and the transitions between the two compartments are ruled by probabilities, taking into account pairwise social interactions and the important influence of social media through the dissemination of fake news. The role of the Brazilian Federal Supreme Court on the control of such violent activities is also considered in a simple way. The analytical and numerical results show that the influence of social media is essential for the spreading and prevalence of radicalism in the population. In the presence of such social media, we show that radicalism can be controlled, but not extincted, by an external influence, that models the acting of the Federal Supreme Court over the violent activities of radicals. If the social media effect is absent, the radicalism can disappear of the population, and this phenomenon is associated with an active-absorbing nonequilibrium phase transition, like the one that occurs in the standard SIS model.
12 pages, 3 figures
References in corpus (8)
- Statistical physics of social dynamics
- Sociophysics: A review of Galam models
- Phase transition in kinetic exchange opinion models with independence
- Modeling the evolution of drinking behavior: A Statistical Physics perspective
- Radicalism: The asymmetric stance of Radicals versus Conventionals
- Radicalization phenomena: Phase transitions, extinction processes and control of violent activities
- Double transition in kinetic exchange opinion models with activation dynamics
- A simple mechanism leading to first-order phase transitions in a model of tax evasion