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19992012
most citedOptimal Paths in Disordered Complex Networks

189 citations · 535 across the 17 of their papers we have counts for

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Showing cond-mat.stat-mechShow all

7 papers · 1 filter

cond-mat.stat-mech2008

Using relaxational dynamics to reduce network congestion

A. L. Pastore Y Piontti, C. E. La Rocca, Z. Toroczkai +3

We study the effects of relaxational dynamics on congestion pressure in scale free networks by analyzing the properties of the corresponding gradient networks (Z. Toroczkai, K. E.…

cond-mat.stat-mech200719 cited

Evolution equation for a model of surface relaxation in complex networks

C. E. La Rocca, L. A. Braunstein, P. A. Macri

In this paper we derive analytically the evolution equation of the interface for a model of surface growth with relaxation to the minimum (SRM) in complex networks. We were inspire…

cond-mat.stat-mech200720 cited

Discrete surface growth process as a synchronization mechanism for scale free complex networks

A. L. Pastore y Piontti, P. A. Macri, L. A. Braunstein

We consider the discrete surface growth process with relaxation to the minimum [F. Family, J. Phys. A {\bf 19} L441, (1986).] as a possible synchronization mechanism on scale-free…

cond-mat.stat-mech200726 cited

Transport and Percolation Theory in Weighted Networks

Guanliang Li, Lidia A. Braunstein, Sergey V. Buldyrev +2

We study the distribution of the equivalent conductance for Erdős-Rényi (ER) and scale-free (SF) weighted resistor networks with nodes. Each link has conductance $g\…

cond-mat.stat-mech2005

Exact scalings in competitive growth models

L. A. Braunstein, Chi-Hang Lam

A competitive growth model (CGM) describes aggregation of a single type of particle under two distinct growth rules with occurrence probabilities and . We explain the orig…

cond-mat.stat-mech1999

A review of growing interfaces in quenched disordered media

L. A. Braunstein, R. C. Buceta, A. Diaz-Sanchez +1

We make a review of the two principal models that allows to explain the imbibition of fluid in porous media. These models, that belong to the directed percolation depinning (DPD) u…