English

Contrarian Majority rule model with external oscillating propaganda and individual inertias

Physics and Society 2023-09-13 v1

Abstract

We study the Galam majority rule dynamics with contrarian behavior and an oscillating external propaganda, in a population of agents that can adopt one of two possible opinions. In an iteration step, a random agent interacts with other three random agents and takes the majority opinion among the agents with probability p(t)p(t) (majority behavior) or the opposite opinion with probability 1p(t)1-p(t) (contrarian behavior). The probability of following the majority rule p(t)p(t) varies with the temperature TT and is coupled to a time-dependent oscillating field that mimics a mass media propaganda, in a way that agents are more likely to adopt the majority opinion when it is aligned with the sign of the field. We investigate the dynamics of this model on a complete graph and find various regimes as TT is varied. A transition temperature TcT_c separates a bimodal oscillatory regime for T<TcT<T_c where the population's mean opinion mm oscillates around a positive or a negative value, from a unimodal oscillatory regime for T>TcT>T_c in which mm oscillates around zero. These regimes are characterized by the distribution of residence times that exhibits a unique peak for a resonance temperature TT^*, where the response of the system is maximum. An insight into these results is given by a mean-field approach, which also shows that TT^* and TcT_c are closely related.

Keywords

Cite

@article{arxiv.2309.05765,
  title  = {Contrarian Majority rule model with external oscillating propaganda and individual inertias},
  author = {M. Cecilia Gimenez and Luis Reinaudi and Serge Galam and Federico Vazquez},
  journal= {arXiv preprint arXiv:2309.05765},
  year   = {2023}
}

Comments

10 pages, 5 figures