English

Nucleation in scale-free networks

Statistical Mechanics 2015-05-19 v2 Disordered Systems and Neural Networks Soft Condensed Matter Populations and Evolution

Abstract

We have studied nucleation dynamics of the Ising model in scale-free networks with degree distribution P(k)kγP(k)\sim k^{-\gamma} by using forward flux sampling method, focusing on how the network topology would influence the nucleation rate and pathway. For homogeneous nucleation, the new phase clusters grow from those nodes with smaller degree, while the cluster sizes follow a power-law distribution. Interestingly, we find that the nucleation rate RHomR_{Hom} decays exponentially with the network size NN, and accordingly the critical nucleus size increases linearly with NN, implying that homogeneous nucleation is not relevant in the thermodynamic limit. These observations are robust to the change of γ\gamma and also present in random networks. In addition, we have also studied the dynamics of heterogeneous nucleation, wherein ww impurities are initially added, either to randomly selected nodes or to targeted ones with largest degrees. We find that targeted impurities can enhance the nucleation rate RHetR_{Het} much more sharply than random ones. Moreover, ln(RHet/RHom)\ln (R_{Het}/R_{Hom}) scales as wγ2/γ1w^{\gamma-2/\gamma-1} and ww for targeted and random impurities, respectively. A simple mean field analysis is also present to qualitatively illustrate above simulation results.

Keywords

Cite

@article{arxiv.1008.0704,
  title  = {Nucleation in scale-free networks},
  author = {Hanshuang Chen and Chuansheng Shen and Zhonghuai Hou and Houwen Xin},
  journal= {arXiv preprint arXiv:1008.0704},
  year   = {2015}
}

Comments

7 pages, 5 figures

R2 v1 2026-06-21T15:56:46.225Z