In this chapter we discuss how the results developed within the theory of fractals and Self-Organized Criticality (SOC) can be fruitfully exploited as ingredients of adaptive network models. In order to maintain the presentation self-contained, we first review the basic ideas behind fractal theory and SOC. We then briefly review some results in the field of complex networks, and some of the models that have been proposed. Finally, we present a self-organized model recently proposed by Garlaschelli et al. (Nat. Phys. 3: 813, 2007) that couples the fitness network model defined by Caldarelli et al. (Phys. Rev. Lett. 89: 258702, 2002) with the evolution model proposed by Bak and Sneppen (Phys. Rev. Lett. 71: 4083, 1993) as a prototype of SOC. ...
In this dissertation, we present a study of complex systems with underlying network topology. Comple...
Complex network structures appear in myriad contexts. From social networks to computer networks, pro...
Blanchard P, Cessac B, Krüger T. What can one learn about self-organized criticality from dynamical ...
In this chapter we discuss how the results developed within the theory of fractals and Self-Organize...
Here we provide a detailed analysis, along with some extensions and additonal investigations, of a r...
Here we provide a detailed analysis, along with some extensions and additonal investigations, of a r...
Here we provide a detailed analysis, along with some extensions and additonal investigations, of a r...
Complex systems of coupled dynamical units can often be understood as adaptive networks. In such net...
Complex systems of coupled dynamical units can often be understood as adaptive networks. In such net...
The study of complex networks and collective dynamics occurring in biological, social and technical ...
With adaptive, complex networks, the evolution of the network topology and the dynamical processes o...
The interplay between topology and dynamics in complex networks is a fundamental but widely unexplor...
The interest towards self-organized and cooperative systems has rapidly increased in recent years. T...
The interplay between topology and dynamics in complex networks is a fundamental but widely unexplor...
In this dissertation, we present a study of complex systems with underlying network topology. Comple...
In this dissertation, we present a study of complex systems with underlying network topology. Comple...
Complex network structures appear in myriad contexts. From social networks to computer networks, pro...
Blanchard P, Cessac B, Krüger T. What can one learn about self-organized criticality from dynamical ...
In this chapter we discuss how the results developed within the theory of fractals and Self-Organize...
Here we provide a detailed analysis, along with some extensions and additonal investigations, of a r...
Here we provide a detailed analysis, along with some extensions and additonal investigations, of a r...
Here we provide a detailed analysis, along with some extensions and additonal investigations, of a r...
Complex systems of coupled dynamical units can often be understood as adaptive networks. In such net...
Complex systems of coupled dynamical units can often be understood as adaptive networks. In such net...
The study of complex networks and collective dynamics occurring in biological, social and technical ...
With adaptive, complex networks, the evolution of the network topology and the dynamical processes o...
The interplay between topology and dynamics in complex networks is a fundamental but widely unexplor...
The interest towards self-organized and cooperative systems has rapidly increased in recent years. T...
The interplay between topology and dynamics in complex networks is a fundamental but widely unexplor...
In this dissertation, we present a study of complex systems with underlying network topology. Comple...
In this dissertation, we present a study of complex systems with underlying network topology. Comple...
Complex network structures appear in myriad contexts. From social networks to computer networks, pro...
Blanchard P, Cessac B, Krüger T. What can one learn about self-organized criticality from dynamical ...