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Main Authors: Valigi, Pietro, Serrano, M. Ángeles, Castellano, Claudio, Cirigliano, Lorenzo
Format: Preprint
Published: 2025
Subjects:
Online Access:https://arxiv.org/abs/2512.24976
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author Valigi, Pietro
Serrano, M. Ángeles
Castellano, Claudio
Cirigliano, Lorenzo
author_facet Valigi, Pietro
Serrano, M. Ángeles
Castellano, Claudio
Cirigliano, Lorenzo
contents The graphicality problem -- whether or not a sequence of integers can be used to create a simple graph -- is a key question in network theory and combinatorics, with many important practical applications. In this work, we study the graphicality of degree sequences distributed as a power-law with a size-dependent cutoff and as a double power-law with a size-dependent crossover. We combine the application of exact sufficient conditions for graphicality with heuristic conditions for nongraphicality which allow us to elucidate the physical reasons why some sequences are not graphical. For single power-laws we recover the known phase-diagram, we highlight the subtle interplay of distinct mechanisms violating graphicality and we explain why the infinite-size limit behavior is in some cases very far from being observed for finite sequences. For double power-laws we derive the graphicality of infinite sequences for all possible values of the degree exponents $γ_1$ and $γ_2$, uncovering a rich phase-diagram and pointing out the existence of five qualitatively distinct ways graphicality can be violated. The validity of theoretical arguments is supported by extensive numerical analysis.
format Preprint
id arxiv_https___arxiv_org_abs_2512_24976
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Graphicality of power-law and double power-law degree sequences
Valigi, Pietro
Serrano, M. Ángeles
Castellano, Claudio
Cirigliano, Lorenzo
Disordered Systems and Neural Networks
The graphicality problem -- whether or not a sequence of integers can be used to create a simple graph -- is a key question in network theory and combinatorics, with many important practical applications. In this work, we study the graphicality of degree sequences distributed as a power-law with a size-dependent cutoff and as a double power-law with a size-dependent crossover. We combine the application of exact sufficient conditions for graphicality with heuristic conditions for nongraphicality which allow us to elucidate the physical reasons why some sequences are not graphical. For single power-laws we recover the known phase-diagram, we highlight the subtle interplay of distinct mechanisms violating graphicality and we explain why the infinite-size limit behavior is in some cases very far from being observed for finite sequences. For double power-laws we derive the graphicality of infinite sequences for all possible values of the degree exponents $γ_1$ and $γ_2$, uncovering a rich phase-diagram and pointing out the existence of five qualitatively distinct ways graphicality can be violated. The validity of theoretical arguments is supported by extensive numerical analysis.
title Graphicality of power-law and double power-law degree sequences
topic Disordered Systems and Neural Networks
url https://arxiv.org/abs/2512.24976