activity
20172020
most citedCascading Failures in Complex Networks

126 citations · 200 across the 3 of their papers we have counts for

collaborators

6 papers

q-bio.PE2020

An epidemic model for COVID-19 transmission in Argentina: Exploration of the alternating quarantine and massive testing strategies

Lautaro Vassallo, Ignacio A. Perez, Lucila G. Alvarez-Zuzek +5

The COVID-19 pandemic has challenged authorities at different levels of government administration around the globe. When faced with diseases of this severity, it is useful for the…

physics.soc-ph2020126 cited

Cascading Failures in Complex Networks

Lucas D. Valdez, Louis Shekhtman, Cristian E. La Rocca +5

Cascading failure is a potentially devastating process that spreads on real-world complex networks and can impact the integrity of wide-ranging infrastructures, natural systems, an…

physics.soc-ph20207 cited

Role of bridge nodes in epidemic spreading: Different regimes and crossovers

Jing Ma, Lucas D. Valdez, Lidia A. Braunstein

Power-law behaviors are common in many disciplines, especially in network science. Real-world networks, like disease spreading among people, are more likely to be interconnected co…

physics.soc-ph2019

Epidemic spreading on modular networks: The fear to declare a pandemic

L. D. Valdez, L. A. Braunstein, S. Havlin

In the past few decades, the frequency of pandemics has been increased due to the growth of urbanization and mobility among countries. Since a disease spreading in one country coul…

physics.soc-ph2018

Insights into bootstrap percolation: Its equivalence with k-core percolation and the giant component

M. A. Di Muro, L. D. Valdez, S. V. Buldyrev +2

K-core and bootstrap percolation are widely studied models that have been used to represent and understand diverse deactivation and activation processes in natural and social syste…

physics.soc-ph201767 cited

Cascading Failures in Interdependent Networks with Multiple Supply-Demand Links and Functionality Thresholds

M. A. Di Muro, L. D. Valdez, H. H. A. Rêgo +3

Various social, financial, biological and technological systems can be modeled by interdependent networks. It has been assumed that in order to remain functional, nodes in one netw…