We briefly describe some recent developments which allow to probe dynamically as well as statically free-energy landscapes of complex systems. Statically, one studies free-energies associated to constrained Boltzmann measures. Dynamically, one studies the relaxation of the system with particular choices of the initial conditions. We present the results for a particular mean-field spin-glass model
We study rough high-dimensional landscapes in which an increasingly stronger preference for a given ...
In this paper we review a recent proposal to understand the long time limit of glassy dynamics in te...
We give a short introduction to the inherent structure approach to glassy systems, with particular e...
We briefly describe some recent developments which allow to probe dynamically as well as statically ...
We briefly describe some recent developments which allow to probe dynamically as well as statically ...
Many interesting features of the dynamics of simple liquids near the glass transition may be underst...
We propose a new method to compute the configurational entropy of glassy systems as a function of th...
We review the use of kinetically constrained models (KCMs) for the study of dynamics in glassy syste...
The dynamics and thermodynamics of a model potential-energy surface are analyzed with regard to supe...
We propose a new class of phenomenological models for dynamic glass transitions. The system consists...
We introduce a generalization of the cavity, or Bethe-Peierls, method that allows to follow Gibbs st...
Properties of the free energy landscape in phase space of a dense hard sphere system characterized b...
Most materials attain a glassy state at low temperatures under suitable methods of preparation. This...
We focus on the energy landscape of a simple mean-field model of glasses and analyze activated barri...
The spherical p-spin model is a fundamental model in statistical mechanics of a disordered system wi...
We study rough high-dimensional landscapes in which an increasingly stronger preference for a given ...
In this paper we review a recent proposal to understand the long time limit of glassy dynamics in te...
We give a short introduction to the inherent structure approach to glassy systems, with particular e...
We briefly describe some recent developments which allow to probe dynamically as well as statically ...
We briefly describe some recent developments which allow to probe dynamically as well as statically ...
Many interesting features of the dynamics of simple liquids near the glass transition may be underst...
We propose a new method to compute the configurational entropy of glassy systems as a function of th...
We review the use of kinetically constrained models (KCMs) for the study of dynamics in glassy syste...
The dynamics and thermodynamics of a model potential-energy surface are analyzed with regard to supe...
We propose a new class of phenomenological models for dynamic glass transitions. The system consists...
We introduce a generalization of the cavity, or Bethe-Peierls, method that allows to follow Gibbs st...
Properties of the free energy landscape in phase space of a dense hard sphere system characterized b...
Most materials attain a glassy state at low temperatures under suitable methods of preparation. This...
We focus on the energy landscape of a simple mean-field model of glasses and analyze activated barri...
The spherical p-spin model is a fundamental model in statistical mechanics of a disordered system wi...
We study rough high-dimensional landscapes in which an increasingly stronger preference for a given ...
In this paper we review a recent proposal to understand the long time limit of glassy dynamics in te...
We give a short introduction to the inherent structure approach to glassy systems, with particular e...