The generalized random energy model is a generalization of the random energy model introduced by Derrida to mimic the ultrametric structure of the Parisi solution of the Sherrington–Kirkpatrick model of a spin glass. It was solved exactly in two special cases by Derrida and Gardner. A complete solution for the thermodynamics in the general case was given by Capocaccia et al. Here we use large deviation theory to analyse the model in a very straightforward way. We also show that the variational expression for the free energy can be evaluated easily using the Cauchy–Schwarz inequality
We compute the pressure of the random energy model (REM) and generalized random energy model (GREM) ...
We compute the pressure of the random energy model (REM) and generalized random energy model (GREM) ...
We compute the pressure of the random energy model (REM) and generalized random energy model (GREM) ...
The generalized random energy model is a generalization of the random energy model introduced by Der...
The generalized random energy model is a generalization of the random energy model introduced by Der...
The generalized random energy model is a generalization of the random energy model introduced by Der...
In this thesis, we consider several Random Energy Models. This includes Derrida's Random Energy Mode...
We study the Derrida generalized random energy model and its resulting probability law for the weigh...
International audienceThe random energy model (REM) and the generalized random energy model (GREM) a...
A Large Deviation Principle (LDP) for the free energy of random Gibbs measures is proved, in the for...
International audienceThe random energy model (REM) and the generalized random energy model (GREM) a...
A Large Deviation Principle (LDP) for the free energy of random Gibbs measures is proved in the form...
We introduce a natural nonhierarchical version of Derrida’s generalized random energy model. We prov...
We compute the pressure of the random energy model (REM) and generalized random energy model (GREM) ...
We compute the pressure of the random energy model (REM) and generalized random energy model (GREM) ...
We compute the pressure of the random energy model (REM) and generalized random energy model (GREM) ...
We compute the pressure of the random energy model (REM) and generalized random energy model (GREM) ...
We compute the pressure of the random energy model (REM) and generalized random energy model (GREM) ...
The generalized random energy model is a generalization of the random energy model introduced by Der...
The generalized random energy model is a generalization of the random energy model introduced by Der...
The generalized random energy model is a generalization of the random energy model introduced by Der...
In this thesis, we consider several Random Energy Models. This includes Derrida's Random Energy Mode...
We study the Derrida generalized random energy model and its resulting probability law for the weigh...
International audienceThe random energy model (REM) and the generalized random energy model (GREM) a...
A Large Deviation Principle (LDP) for the free energy of random Gibbs measures is proved, in the for...
International audienceThe random energy model (REM) and the generalized random energy model (GREM) a...
A Large Deviation Principle (LDP) for the free energy of random Gibbs measures is proved in the form...
We introduce a natural nonhierarchical version of Derrida’s generalized random energy model. We prov...
We compute the pressure of the random energy model (REM) and generalized random energy model (GREM) ...
We compute the pressure of the random energy model (REM) and generalized random energy model (GREM) ...
We compute the pressure of the random energy model (REM) and generalized random energy model (GREM) ...
We compute the pressure of the random energy model (REM) and generalized random energy model (GREM) ...
We compute the pressure of the random energy model (REM) and generalized random energy model (GREM) ...