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April 16, 2001Physical Review Letters1,466 citationsOpen Access

Breakdown of the Internet under Intentional Attack

RCReuven CohenKEKeren ErezDBDaniel ben‐Avraham

Key Points

  • This study aims to understand how targeted attacks affect the stability of scale-free networks.
  • Analyzed the critical fraction needed for network disintegration using percolation theory.
  • Examined the size of the largest connected cluster after intentional site removal.
  • Conducted both analytical and numerical studies on network resilience with varying connectivity distributions.
  • Identified that networks with alpha <= 3 are sensitive to intentional attacks despite resilience to random removal.
  • Determined the critical fraction for disintegration and noted deviations from expected scaling behavior near criticality.

Abstract

We study the tolerance of random networks to intentional attack, whereby a fraction p of the most connected sites is removed. We focus on scale-free networks, having connectivity distribution P(k) approximately k(-alpha), and use percolation theory to study analytically and numerically the critical fraction p(c) needed for the disintegration of the network, as well as the size of the largest connected cluster. We find that even networks with alpha < or = 3, known to be resilient to random removal of sites, are sensitive to intentional attack. We also argue that, near criticality, the average distance between sites in the spanning (largest) cluster scales with its mass, M, as square root of M, rather than as log (k)M, as expected for random networks away from criticality.

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Cite This Study

Cohen et al. (2001) studied this question.

synapsesocial.com/papers/6a0fe0762badbc352afeded4https://doi.org/10.1103/physrevlett.86.3682
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