Heterogeneous Network Topology Induces the Widom Line
Abstract
The Widom line, initially identified as a crossover line between liquid-like and gas-like behavior in water and supercritical fluids, separates these two types of behavior. Here, we show that an analogous line arises in spin models on scale-free networks as a consequence of degree heterogeneity, which we analyze using the annealed network approximation. For the Ashkin--Teller and Invisible Potts models, the Widom line exists within a finite range of the degree exponent. It separates two distinct ordered regimesdistributed spin alignment and hub-dominant alignmentwhile also giving rise to a supercritical-like state where the two alignments become indistinguishable. These results demonstrate that degree heterogeneity alone can generate mesoscopic crossovers beyond conventional phase-transition theory, opening new directions for understanding and controlling collective dynamics in complex networks.
Cite
@article{arxiv.2607.09174,
title = {Heterogeneous Network Topology Induces the Widom Line},
author = {Cook Hyun Kim and B. Kahng},
journal= {arXiv preprint arXiv:2607.09174},
year = {2026}
}
Comments
26 pages, 11 figures