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May 1, 2021421 citationsOpen Access

Evolutionary dynamics of higher-order interactions in social networks

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UAUnai Alvarez-RodriguezFBFederico BattistonGAGuilherme Ferraz de Arruda

Key Points

  • This research aims to understand how higher-order interactions influence cooperation dynamics in social networks.
  • Analyzed a public goods game in social systems with higher-order interactions.
  • Developed a theoretical model linking hypergraphs to replicator dynamics.
  • Applied the framework to real-world data on collaboration in science and technology.
  • Higher-order interactions significantly enhance the evolution of cooperation compared to traditional pairwise models.
  • The presence of hubs positively affects cooperation in groups of varying sizes.
  • Extracted the synergy factor's dependence on group size from actual collaboration data.

Abstract

We live and cooperate in networks. However, links in networks only allow for pairwise interactions, thus making the framework suitable for dyadic games, but not for games that are played in larger groups. Here, we study the evolutionary dynamics of a public goods game in social systems with higher-order interactions. First, we show that the game on uniform hypergraphs corresponds to the replicator dynamics in the well-mixed limit, providing a formal theoretical foundation to study cooperation in networked groups. Second, we unveil how the presence of hubs and the coexistence of interactions in groups of different sizes affects the evolution of cooperation. Finally, we apply the proposed framework to extract the actual dependence of the synergy factor on the size of a group from real-world collaboration data in science and technology. Our work provides a way to implement informed actions to boost cooperation in social groups.

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Cite This Study

Alvarez-Rodriguez et al. (2021) studied this question.

synapsesocial.com/papers/6a0f68e32badbc352afe229ehttps://doi.org/10.5167/uzh-214990
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