The dynamical susceptibility has been introduced to characterize the dynamical heterogeneities in glass forming liquids. We have used it as a tool to investigate the slow dynamics of other disordered systems such as gels, granular media and spin glasses. We review here the results obtained via numerical simulations of different model systems. The comparative study of the behaviour of the dynamical susceptibility sheds some light on the significant differences in the complex slow dynamics of glasses, spin glasses, granular media, irreversible gels, and colloidal gels
Many fascinating questions still remain unsettled for condensed matter physicists who study the glas...
We here discuss the results of three-dimensional Monte Carlo simulations of a minimal lattice model ...
We use event driven simulations to analyze glassy dynamics as a function of density and energy dissi...
We will review some of the theoretical progresses that have been recently done in the study of slow ...
We investigate the heterogeneous dynamics in a model, where chemical gelation and glass transition i...
This review focuses on recent developments in the theoretical, numerical and experimental study of s...
2The role of the intermolecular interaction potential on the dynamic and thermodynamic properties of...
We numerically study dynamics and correlation length scales of a colloidal liquid in both quiescent ...
33 pages, 7 figs, contribution to JSTAT special issue `Principles of Dynamical Systems' work-shop at...
Microscopically disordered materials are at the core of an increasing number of new material technol...
The dynamical arrest of gels is the consequence of a well defined structural phase transition, leadi...
One of the challenges in soft and condensed matter over the last years is understanding the phenomen...
We investigate the mechanical properties of several model liquids and corresponding local energy min...
During my Ph.D. I have worked on several topics, all connected by the same purpose to understand, fr...
A theoretical perspective is provided on the glass transition in molecular liquids at thermal equili...
Many fascinating questions still remain unsettled for condensed matter physicists who study the glas...
We here discuss the results of three-dimensional Monte Carlo simulations of a minimal lattice model ...
We use event driven simulations to analyze glassy dynamics as a function of density and energy dissi...
We will review some of the theoretical progresses that have been recently done in the study of slow ...
We investigate the heterogeneous dynamics in a model, where chemical gelation and glass transition i...
This review focuses on recent developments in the theoretical, numerical and experimental study of s...
2The role of the intermolecular interaction potential on the dynamic and thermodynamic properties of...
We numerically study dynamics and correlation length scales of a colloidal liquid in both quiescent ...
33 pages, 7 figs, contribution to JSTAT special issue `Principles of Dynamical Systems' work-shop at...
Microscopically disordered materials are at the core of an increasing number of new material technol...
The dynamical arrest of gels is the consequence of a well defined structural phase transition, leadi...
One of the challenges in soft and condensed matter over the last years is understanding the phenomen...
We investigate the mechanical properties of several model liquids and corresponding local energy min...
During my Ph.D. I have worked on several topics, all connected by the same purpose to understand, fr...
A theoretical perspective is provided on the glass transition in molecular liquids at thermal equili...
Many fascinating questions still remain unsettled for condensed matter physicists who study the glas...
We here discuss the results of three-dimensional Monte Carlo simulations of a minimal lattice model ...
We use event driven simulations to analyze glassy dynamics as a function of density and energy dissi...