优先依附
计算机科学
复杂网络
力矩(物理)
节点(物理)
无标度网络
简单(哲学)
动态网络分析
网络拓扑
编队网络
拓扑(电路)
网络科学
网络结构
对比度(视觉)
时间演化
理论计算机科学
人工智能
数学
物理
计算机网络
组合数学
万维网
认识论
哲学
经典力学
量子力学
作者
Albert-László Barabási,H. David Jeong,Zoltán Néda,Erzsébet Ravasz,Andreas Schubert,Tamás Vicsek
标识
DOI:10.1016/s0378-4371(02)00736-7
摘要
The co-authorship network of scientists represents a prototype of complex evolving networks. By mapping the electronic database containing all relevant journals in mathematics and neuro-science for an eight-year period (1991-98), we infer the dynamic and the structural mechanisms that govern the evolution and topology of this complex system. First, empirical measurements allow us to uncover the topological measures that characterize the network at a given moment, as well as the time evolution of these quantities. The results indicate that the network is scale-free, and that the network evolution is governed by preferential attachment, affecting both internal and external links. However, in contrast with most model predictions the average degree increases in time, and the node separation decreases. Second, we propose a simple model that captures the network's time evolution. Third, numerical simulations are used to uncover the behavior of quantities that could not be predicted analytically.
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