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Main Authors: Di Gaetano, Leonardo, Battiston, Federico, Starnini, Michele
Format: Preprint
Published: 2023
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Online Access:https://arxiv.org/abs/2306.00779
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author Di Gaetano, Leonardo
Battiston, Federico
Starnini, Michele
author_facet Di Gaetano, Leonardo
Battiston, Federico
Starnini, Michele
contents Many complex systems that exhibit temporal non-pairwise interactions can be represented by means of generative higher-order network models. Here, we propose a hidden variables formalism to analytically characterize a general class of higher-order network models We apply our framework to a temporal higher-order activity-driven model, providing analytical expressions for the main topological properties of the time-integrated hypergraphs, depending on the integration time and the activity distributions characterizing the model. Furthermore, we provide analytical estimates for the percolation times of general classes of uncorrelated and correlated hypergraphs. Finally, we quantify the extent to which the percolation time of empirical social interactions is underestimated when their higher-order nature is neglected.
format Preprint
id arxiv_https___arxiv_org_abs_2306_00779
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Percolation and Topological Properties of Temporal Higher-order Networks
Di Gaetano, Leonardo
Battiston, Federico
Starnini, Michele
Physics and Society
Many complex systems that exhibit temporal non-pairwise interactions can be represented by means of generative higher-order network models. Here, we propose a hidden variables formalism to analytically characterize a general class of higher-order network models We apply our framework to a temporal higher-order activity-driven model, providing analytical expressions for the main topological properties of the time-integrated hypergraphs, depending on the integration time and the activity distributions characterizing the model. Furthermore, we provide analytical estimates for the percolation times of general classes of uncorrelated and correlated hypergraphs. Finally, we quantify the extent to which the percolation time of empirical social interactions is underestimated when their higher-order nature is neglected.
title Percolation and Topological Properties of Temporal Higher-order Networks
topic Physics and Society
url https://arxiv.org/abs/2306.00779