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Preferential attachment renders an evolving network of populations robust against crashes

Areejit Samal and Hildegard Meyer-Ortmanns

Physica A: Statistical Mechanics and its Applications, 2009, vol. 388, issue 8, 1535-1545

Abstract: We study a model for the evolution of chemical species under a combination of population dynamics on a short time scale, and a selection mechanism on a longer time scale. Least fit nodes are replaced by new nodes whose links are attached to the nodes of the given network via preferential attachment. In contrast to a random attachment of newly incoming nodes that was used in previous work, this preferential attachment mechanism accelerates the generation of a so-called autocatalytic set after a start from a random geometry, and the growth of this structure, until it saturates in a stationary phase in which the whole system is an autocatalytic set. Moreover, the system in the stationary phase becomes much more stable against crashes in the population size as compared to random attachment. We explain in detail, in terms of graph theoretical notions, which structure of the resulting network is responsible for this stability. Essentially it is a very dense core with many loops and less nodes playing the role of a keystone that prevents the system from crashing, almost completely.

Keywords: Complex networks; Network evolution; Population dynamics; Selection; Autocatalytic sets (search for similar items in EconPapers)
Date: 2009
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Persistent link: https://EconPapers.repec.org/RePEc:eee:phsmap:v:388:y:2009:i:8:p:1535-1545

DOI: 10.1016/j.physa.2008.12.045

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