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Stratification in the preferential attachment network

E Ben-Naim et al 2009 J. Phys. A: Math. Theor. 42 475001 (10pp)   doi: 10.1088/1751-8113/42/47/475001  Help

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E Ben-Naim1 and P L Krapivsky2
1 Theoretical Division and Center for Nonlinear Studies, Los Alamos National Laboratory, Los Alamos, NM 87545, USA
2 Department of Physics, Boston University, Boston, MA 02215, USA

Abstract. We study structural properties of trees grown by preferential attachment. In this mechanism, nodes are added sequentially and attached to existing nodes at a rate that is strictly proportional to the degree. We classify nodes by their depth n, defined as the distance from the root of the tree, and find that the network is strongly stratified. Most notably, the distribution f(n)k of nodes with degree k at depth n has a power-law tail, f(n)k ~ k−γ(n). The exponent grows linearly with depth, \gamma (n)=2+\frac{n-1}{\langle n-1\rangle }, where the brackets denote an average over all nodes. Therefore, nodes that are closer to the root are better connected, and moreover, the degree distribution strongly varies with depth. Similarly, the in-component size distribution has a power-law tail and the characteristic exponent grows linearly with depth. Qualitatively, these behaviors extend to a class of networks that grow by redirection.

PACS numbers: 89.75,Hc, 05.40.−a, 02.50.Ey, 05.20.Dd

Print publication: Issue 47 (27 November 2009)
Received 4 September 2009
Published 4 November 2009

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