English

Eigenvector dynamics under perturbation of modular networks

Physics and Society 2016-07-20 v2 Information Retrieval

Abstract

Rotation dynamics of eigenvectors of modular network adjacency matrices under random perturbations are presented. In the presence of qq communities, the number of eigenvectors corresponding to the qq largest eigenvalues form a "community" eigenspace and rotate together, but separately from that of the "bulk" eigenspace spanned by all the other eigenvectors. Using this property, the number of modules or clusters in a network can be estimated in an algorithm-independent way. A general argument and derivation for the theoretical detectability limit for sparse modular networks with qq communities is presented, beyond which modularity persists in the system but cannot be detected. It is shown that for detecting the clusters or modules using the adjacency matrix, there is a "band" in which it is hard to detect the clusters even before the theoretical detectability limit is reached, and for which the theoretically predicted detectability limit forms the sufficient upper bound. Analytic estimations of these bounds are presented, and empirically demonstrated.

Keywords

Cite

@article{arxiv.1510.07064,
  title  = {Eigenvector dynamics under perturbation of modular networks},
  author = {Somwrita Sarkar and Sanjay Chawla and Peter A. Robinson and Santo Fortunato},
  journal= {arXiv preprint arXiv:1510.07064},
  year   = {2016}
}

Comments

7 pages, 4 figures

R2 v1 2026-06-22T11:27:51.464Z