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An extended clique degree distribution and its heterogeneity in cooperation-competition networks
Authors:Ai-Xia Feng  Chun-Hua FuXiu-Lian Xu  Yue-Ping ZhouHui Chang  Jian WangDa-Ren He  Guo-Lin Feng
Institution:
  • a College of Physics Science and Technology, Yangzhou University, Yangzhou 225002, China
  • b College of Atmospheric Sciences, Lanzhou University, Lanzhou 730000, China
  • Abstract:After Xiao et al. W.-K. Xiao, J. Ren, F. Qi, Z.W. Song, M.X. Zhu, H.F. Yang, H.Y. Jin, B.-H. Wang, Tao Zhou, Empirical study on clique-degree distribution of networks, Phys. Rev. E 76 (2007) 037102], in this article we present an investigation on so-called k-cliques, which are defined as complete subgraphs of k (k>1) nodes, in the cooperation-competition networks described by bipartite graphs. In the networks, the nodes named actors are taking part in events, organizations or activities, named acts. We mainly examine a property of a k-clique called “k-clique act degree”, q, defined as the number of acts, in which the k-clique takes part. Our analytic treatment on a cooperation-competition network evolution model demonstrates that the distribution of k-clique act degrees obeys Mandelbrot distribution, P(q)∝(q+α)γ. To validate the analytical model, we have further studied 13 different empirical cooperation-competition networks with the clique numbers k=2 and k=3. Empirical investigation results show an agreement with the analytic derivations. We propose a new “heterogeneity index”, H, to describe the heterogeneous degree distributions of k-clique and heuristically derive the correlation between H and α and γ. We argue that the cliques, which take part in the largest number of acts, are the most important subgraphs, which can provide a new criterion to distinguish important cliques in the real world networks.
    Keywords:Cooperation-competition  _method=retrieve&  _eid=1-s2  0-S0378437111009101&  _mathId=si51  gif&  _pii=S0378437111009101&  _issn=03784371&  _acct=C000054348&  _version=1&  _userid=3837164&  md5=8fe3007dcdcda708471eb879bddc59e6')" style="cursor:pointer  k-clique" target="_blank">" alt="Click to view the MathML source" title="Click to view the MathML source">k-clique  Heterogeneity
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