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Multibody interactions and nonlinear consensus dynamics on networked systems

Leonie Neuhäuser, Andrew Mellor, and Renaud Lambiotte
Phys. Rev. E 101, 032310 – Published 30 March 2020

Abstract

Multibody interactions can reveal higher-order dynamical effects that are not captured by traditional two-body network models. In this work, we derive and analyze models for consensus dynamics on hypergraphs, where nodes interact in groups rather than in pairs. Our work reveals that multibody dynamical effects that go beyond rescaled pairwise interactions can appear only if the interaction function is nonlinear, regardless of the underlying multibody structure. As a practical application, we introduce a specific nonlinear function to model three-body consensus, which incorporates reinforcing group effects such as peer pressure. Unlike consensus processes on networks, we find that the resulting dynamics can cause shifts away from the average system state. The nature of these shifts depends on a complex interplay between the distribution of the initial states, the underlying structure, and the form of the interaction function. By considering modular hypergraphs, we discover state-dependent, asymmetric dynamics between polarized clusters where multibody interactions make one cluster dominate the other.

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  • Received 23 October 2019
  • Accepted 31 January 2020

DOI:https://doi.org/10.1103/PhysRevE.101.032310

©2020 American Physical Society

Physics Subject Headings (PhySH)

Interdisciplinary PhysicsNetworks

Authors & Affiliations

Leonie Neuhäuser*

  • Mathematical Institute, University of Oxford, Oxford OX2 6GG, United Kingdom and Hertie School, Berlin 10117, Germany

Andrew Mellor and Renaud Lambiotte

  • Mathematical Institute, University of Oxford, Oxford OX2 6GG, United Kingdom

  • *neuhauser@maths.ox.ac.uk
  • mellor@maths.ox.ac.uk
  • renaud.lambiotte@maths.ox.ac.uk

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Issue

Vol. 101, Iss. 3 — March 2020

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