Information cascade on networks and phase transitions
Abstract
Herein, we consider a voting model for information cascades on several types of networks -- a random graph, the Barab\'{a}si-Albert(BA) model, and lattice networks -- by using one parameter ; respectively correspond to these networks. is related to the size of hubs. We discuss the differences between the phases in which the networks depend. In , without, the following two types of phase transitions can be observed: information cascade transition and super-normal transition. The first is the transition between a state where most voters make correct choices and a state where most of them are wrong. This is an absorption transition that belongs to the non-equilibrium transition. In the symmetric case, the phase transition is continuous and the universality class is the same as nonlinear P\'{o}lya model. In contrast, in the asymmetric case, there is a discontinuous phase transition, where the gap depends on the network. The super-normal transition is the transition of the convergence speed, and the critical point of the convergence speed transition depends on . At , in the BA model, this transition disappears. Both phase transitions disappear at in the lattice case. In conclusion, as the performance near the lattice case, exhibits the best performance of the voting in all networks. As the hub size decreases, the performance improves.
Cite
@article{arxiv.2302.12295,
title = {Information cascade on networks and phase transitions},
author = {Masato Hisakado and Kazuaki Nakayama and Shintaro Mori},
journal= {arXiv preprint arXiv:2302.12295},
year = {2024}
}
Comments
37 pages 13 figures