Messengers: Breaking Echo Chambers in Collective Opinion Dynamics with Homophily
Abstract
Collective estimation is a variant of collective decision-making where agents reach consensus on a continuous quantity through social interactions. Achieving precise consensus is complex due to the co-evolution of opinions and the interaction network. While homophilic networks may facilitate estimation in well-connected systems, disproportionate interactions with like-minded neighbors lead to the emergence of echo chambers and prevent consensus. Our agent-based simulations confirm that, besides limited exposure to attitude-challenging opinions, seeking reaffirming information entrap agents in echo chambers. To overcome this, agents can adopt a stubborn state (Messengers) that carry data and connect clusters by physically transporting their opinion. We propose a generic approach based on a Dichotomous Markov Process, which governs probabilistic switching between behavioral states and generates diverse collective behaviors. We study a continuum between task specialization (no switching), to generalization (slow or rapid switching). Messengers help the collective escape local minima, break echo chambers, and promote consensus.
Keywords
Cite
@article{arxiv.2406.06440,
title = {Messengers: Breaking Echo Chambers in Collective Opinion Dynamics with Homophily},
author = {Mohsen Raoufi and Heiko Hamann and Pawel Romanczuk},
journal= {arXiv preprint arXiv:2406.06440},
year = {2025}
}
Comments
This paper has been peer-reviewed and accepted for publication in Nature Portfolio Journal (NPJ) Complexity