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Random Recursive Simplicial Complexes

Published 27 Aug 2026 in math.CO, cond-mat.dis-nn, cond-mat.stat-mech, and physics.soc-ph | (2608.26547v1)

Abstract: We investigate random recursive simplicial complexes growing by adding, at each step, a vertex together with a simplex formed by joining the new vertex with a randomly chosen existing simplex. We also add all faces of the new simplex to ensure that the resulting object remains a simplicial complex. If the choice of an existing simplex is uniform among simplices of dimension $<m$, the number SdS_d of simplices of any admissible dimension dmd\leq m is an asymptotically self-averaging random variable. This feature allows us to determine the asymptotic growth law of the average of SdS_d when the number of vertices diverges. We also probe the degree distribution, examine the probabilities of various extreme outcomes, and analyze the characteristics of the first vertex.

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