Dual roles of higher-order interactions in temporal cooperation dynamics

Higher-order interactions are ubiquitous in real-world collaborative systems, yet existing studies often consider temporal dynamics and higher-order interactions separately, limiting the understanding of cooperation in realistic group environments. To bridge this gap, we develop an empirical evolutionary game framework based on temporal higher-order networks using two real-world face-to-face interaction datasets: Office 2013 and Office 2015. Specifically, we show that higher-order interactions exhibit a condition-dependent dual role: under a weak dilemma ( δ 1 = 0.1 ), cooperation frequency f C reaches 0.73 compared with 0.16 in pairwise networks, whereas under a strong dilemma ( δ 1 = 0.4 ), cooperation collapses to 0 compared with 0.12 in pairwise networks. Randomization experiments further reveal that the association between temporal burstiness and cooperation differs between pairwise and higher-order interaction systems. Finally, we extend the heterogeneous activity-driven model to derive an analytical defection threshold for temporal higher-order networks, providing a theoretical framework for understanding cooperation collapse in evolving group interactions.

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Publication Details

Journal
Information Processing & Management
Published
2026-10-09
DOI
https://doi.org/10.1016/j.ipm.2026.105219
Primary Topic
Evolutionary Game Theory and Cooperation
Type
article
Field-Weighted Citation Impact
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article

Dual roles of higher-order interactions in temporal cooperation dynamics

Wensheng Jia, Tianjiao Long
Information Processing & Management
Evolutionary Game Theory and Cooperation
article

Dual roles of higher-order interactions in temporal cooperation dynamics

Wensheng Jia, Tianjiao Long
article en

Abstract

Higher-order interactions are ubiquitous in real-world collaborative systems, yet existing studies often consider temporal dynamics and higher-order interactions separately, limiting the understanding of cooperation in realistic group environments. To bridge this gap, we develop an empirical evolutionary game framework based on temporal higher-order networks using two real-world face-to-face interaction datasets: Office 2013 and Office 2015. Specifically, we show that higher-order interactions exhibit a condition-dependent dual role: under a weak dilemma ( δ 1 = 0.1 ), cooperation frequency f C reaches 0.73 compared with 0.16 in pairwise networks, whereas under a strong dilemma ( δ 1 = 0.4 ), cooperation collapses to 0 compared with 0.12 in pairwise networks. Randomization experiments further reveal that the association between temporal burstiness and cooperation differs between pairwise and higher-order interaction systems. Finally, we extend the heterogeneous activity-driven model to derive an analytical defection threshold for temporal higher-order networks, providing a theoretical framework for understanding cooperation collapse in evolving group interactions.

Information Processing & ManagementVol. 64(2)
Guizhou University (CN)
Openalex Percentile: Top 6%
Evolutionary Game Theory and Cooperation
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Dual roles of higher-order interactions in temporal cooperation dynamics — Wensheng Jia, Tianjiao Long · Information Processing & Management (2026) | TGRS Research Map | TGRS