A nesting coefficient quantifying embedding of lower-order interactions in higher-order hypergraph structures controls activation thresholds, transition continuity, and hysteresis in higher-order SIS contagion.
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Nesting Controls Phase Transitions in Higher-Order Contagion
A nesting coefficient quantifying embedding of lower-order interactions in higher-order hypergraph structures controls activation thresholds, transition continuity, and hysteresis in higher-order SIS contagion.