National Science Review · 2014 · 18 citations · 36 references
Network Theory (Electrical Engineering)EngineeringRandom Complex NetworksNetwork AnalysisScale-free NetworkNetwork EvolutionRandom GraphNetwork ComplexityDegree DistributionNetwork EconomicsNetwork InterdictionSocial Network AnalysisNetwork Theory (Organizational Economics)NetworksNetwork EstimationComplex NetworksComputer ScienceNode Degree DistributionNetwork TheoryNetwork ScienceGraph TheoryNetwork BiologyBusiness
Abstract Exactly what is meant by a ‘complex’ network is not clear; however, what is clear is that it is something other than a random graph. Complex networks arise in a wide range of real social, technological and physical systems. In all cases, the most basic categorization of these graphs is their node degree distribution. Particular groups of complex networks may exhibit additional interesting features, including the so-called small-world effect or being scale-free. There are many algorithms with which one may generate networks with particular degree distributions (perhaps the most famous of which is preferential attachment). In this paper, we address what it means to randomly choose a network from the class of networks with a particular degree distribution, and in doing so we show that the networks one gets from the preferential attachment process are actually highly pathological. Certain properties (including robustness and fragility) which have been attributed to the (scale-free) degree distribution are actually more intimately related to the preferential attachment growth mechanism. We focus here on scale-free networks with power-law degree sequences—but our methods and results are perfectly generic.
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Collective dynamics of ‘small-world’ networks
Duncan J. Watts, Steven H. Strogatz · Nature · 1998 · 42.4K citations
Emergence of Scaling in Random Networks
Albert-Ĺaszló Barabási, Réka Albert · Science · 1999 · 35.7K citations · Full text
P. Erdős, A. Rényi · Publicationes Mathematicae Debrecen · 2022 · 5K citations
The large-scale organization of metabolic networks