This page is an archival copy for indexing and accessibility purposes. All figures have been removed to decrease the page size. See https://doi.org/10.1088/1742-5468/2014/12/p12003 for the final version.

Random walks in directed modular networks

Cesar H Comin (ORCID), Mateus P Viana, Lucas Antiqueira, Luciano Da F Costa

Journal of Statistical Mechanics: Theory and Experiment, 2014(12): P12003. . DOI: 10.1088/1742-5468/2014/12/p12003.

Abstract

Because diffusion typically involves symmetric interactions, scant attention has been focused on studying asymmetric cases. However, important networked systems underlain by diffusion (e.g. cortical networks and WWW) are inherently directed. In the case of undirected diffusion, it can be shown that the steady-state probability of the random walk dynamics is fully correlated with the degree, which no longer holds for directed networks. We investigate the relationship between such probability and the inward node degree, which we call efficiency, in modular networks. Our findings show that the efficiency of a given community depends mostly on the balance between its ingoing and outgoing connections. In addition, we derive analytical expressions to show that the internal degree of the nodes does not play a crucial role in their efficiency, when considering the Erdős–Rényi and Barabási–Albert models. The results are illustrated with respect to the macaque cortical network, providing subsidies for improving transportation and communication systems.

Citation

@article{Comin2014Random,
  title   = {Random walks in directed modular networks},
  author  = {Comin, Cesar H and Viana, Mateus P and Antiqueira, Lucas and Costa, Luciano Da F},
  journal = {Journal of Statistical Mechanics: Theory and Experiment},
  year    = {2014},
  volume  = {2014},
  number  = {12},
  pages   = {P12003},
  doi     = {10.1088/1742-5468/2014/12/p12003}
}