Contrarian Voter Model under the influence of an Oscillating Propaganda: Consensus, Bimodal behavior and Stochastic Resonance
arXiv:2208.11189 · doi:10.3390/e24081140
Abstract
We study the contrarian voter model for opinion formation in a society under the influence of an external oscillating propaganda and stochastic noise. Each agent of the population can hold one of two possible opinions on a given issue --against or in favor, and interacts with its neighbors following either an imitation dynamics (voter behavior) or an anti-alignment dynamics (contrarian behavior): each agent adopts the opinion of a random neighbor with a time-dependent probability , or takes the opposite opinion with probability . The imitation probability is controlled by the social temperature , and varies in time according to a periodic field that mimics the influence of an external propaganda, so that a voter is more prone to adopt an opinion aligned with the field. We simulate the model in complete graph and in lattices, and find that the system exhibits a rich variety of behaviors as is varied: opinion consensus for , a bimodal behavior for , an oscillatory behavior where the mean opinion oscillates in time with the field for , and full disorder for . The transition temperature vanishes with the population size as in complete graph. Besides, the distribution of residence times in the bimodal phase decays approximately as . Within the oscillatory regime, we find a stochastic resonance-like phenomenon at a given temperature . Also, mean-field analytical results show that the opinion oscillations reach a maximum amplitude at an intermediate temperature, and that exhibit a lag respect to the field that decreases with .
15 pages, 7 figures
References in corpus (13)
- Statistical physics of social dynamics
- On the Role of Zealotry in the Voter Model
- Generic Absorbing Transition in Coevolution Dynamics
- Diversity-induced resonance
- Conservation laws for the voter model in complex networks
- Analytical Solution of the Voter Model on Disordered Networks
- Heterogeneous Voter Models
- Mass media and heterogeneous bounds of confidence in continuous opinion dynamics
- Systems with two symmetric absorbing states: relating the microscopic dynamics with the macroscopic behavior
- The influence of contrarians in the dynamics of opinion formation
- Phase transition in a coevolving network of conformist and contrarian voters
- Divide and conquer: resonance induced by competitive interactions
- Noisy multistate voter model for flocking in finite dimensions