Prediction and control of network dynamics are grand-challenge problems in network science. The lack of understanding of fundamental laws driving the dynamics of networks is among the reasons why many practical problems of great significance remain unsolved for decades. Here we study the dynamics of networks evolving according to preferential attachment (PA), known to approximate well the large-scale growth dynamics of a variety of real networks. We show that this dynamics is Hamiltonian, thus casting the study of complex networks dynamics to the powerful canonical formalism, in which the time evolution of a dynamical system is described by Hamilton's equations. We derive the explicit form of the Hamiltonian that governs network growth in P...
The study of temporal behavior of local characteristics in complex growing networks makes it possibl...
In this communication we present results concerning a generalization of the preferential attachment ...
In spite of its relevance to the origin of complex networks, the interplay between form and function...
Preferential attachment is one possible way to obtain a scale-free network. We develop a self-consis...
Preferential attachment drives the evolution of many complex networks. Its analytical studies mostly...
Preferential attachment is one possible way to obtain a scale-free network. We develop a self-consis...
We propose a network growth algorithm based on the dynamics of a quantum mechanical system co-evolvi...
Preferential attachment drives the evolution of many complex networks. Its analytical studies mostly...
We propose a preferential attachment model for network growth where new entering nodes hav...
We show that to explain the growth of the citation network by preferential attachment (PA), one has ...
We show that to explain the growth of the citation network by preferential attachment (PA), one has ...
We show that to explain the growth of the citation network by preferential attachment (PA), one has ...
Abstract. The combination of growth and preferential attachment is responsible for the power-law dis...
Many complex systems have been shown to share universal properties of organization, such as scale in...
We propose a new preferential attachment-based network growth model in order to explain two properti...
The study of temporal behavior of local characteristics in complex growing networks makes it possibl...
In this communication we present results concerning a generalization of the preferential attachment ...
In spite of its relevance to the origin of complex networks, the interplay between form and function...
Preferential attachment is one possible way to obtain a scale-free network. We develop a self-consis...
Preferential attachment drives the evolution of many complex networks. Its analytical studies mostly...
Preferential attachment is one possible way to obtain a scale-free network. We develop a self-consis...
We propose a network growth algorithm based on the dynamics of a quantum mechanical system co-evolvi...
Preferential attachment drives the evolution of many complex networks. Its analytical studies mostly...
We propose a preferential attachment model for network growth where new entering nodes hav...
We show that to explain the growth of the citation network by preferential attachment (PA), one has ...
We show that to explain the growth of the citation network by preferential attachment (PA), one has ...
We show that to explain the growth of the citation network by preferential attachment (PA), one has ...
Abstract. The combination of growth and preferential attachment is responsible for the power-law dis...
Many complex systems have been shown to share universal properties of organization, such as scale in...
We propose a new preferential attachment-based network growth model in order to explain two properti...
The study of temporal behavior of local characteristics in complex growing networks makes it possibl...
In this communication we present results concerning a generalization of the preferential attachment ...
In spite of its relevance to the origin of complex networks, the interplay between form and function...