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Main Authors: Liu, Li-Ying, Cai, Chao-Ran, Zhang, Si-Ping, Li, Bin-Quan
Format: Preprint
Published: 2024
Subjects:
Online Access:https://arxiv.org/abs/2409.15605
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author Liu, Li-Ying
Cai, Chao-Ran
Zhang, Si-Ping
Li, Bin-Quan
author_facet Liu, Li-Ying
Cai, Chao-Ran
Zhang, Si-Ping
Li, Bin-Quan
contents This paper investigates the coexistence of positive and negative information in the context of information-epidemic dynamics on multiplex networks. In accordance with the tenets of mean field theory, we present not only the analytic solution of the prevalence threshold, but also the coexistence conditions of two distinct forms of information (i.e., the two phase transition points at which a single form of information becomes extinct). In regions where multiple forms of information coexist, two completely distinct patterns emerge: monotonic and non-monotonic. The physical mechanisms that give rise to these different patterns have also been elucidated. The theoretical results are robust with regard to the network structure and show a high degree of agreement with the findings of the Monte Carlo simulation.
format Preprint
id arxiv_https___arxiv_org_abs_2409_15605
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Coexistence of positive and negative information in information-epidemic dynamics on multiplex networks
Liu, Li-Ying
Cai, Chao-Ran
Zhang, Si-Ping
Li, Bin-Quan
Physics and Society
This paper investigates the coexistence of positive and negative information in the context of information-epidemic dynamics on multiplex networks. In accordance with the tenets of mean field theory, we present not only the analytic solution of the prevalence threshold, but also the coexistence conditions of two distinct forms of information (i.e., the two phase transition points at which a single form of information becomes extinct). In regions where multiple forms of information coexist, two completely distinct patterns emerge: monotonic and non-monotonic. The physical mechanisms that give rise to these different patterns have also been elucidated. The theoretical results are robust with regard to the network structure and show a high degree of agreement with the findings of the Monte Carlo simulation.
title Coexistence of positive and negative information in information-epidemic dynamics on multiplex networks
topic Physics and Society
url https://arxiv.org/abs/2409.15605