International audienceThe violent relaxation and the metastable states of the Hamiltonian Mean-Field model, a paradigmatic system of long-range interactions, is studied using a Hamiltonian formalism. Rigorous results are derived algebraically for the time evolution of selected macroscopic observables, e.g., the global magnetization. The high and low energy limits are investigated and the analytical predictions are compared with direct $N$-body simulations. The method we use enables us to re-interpret the out-of-equilibrium phase transition separating magnetized and (almost) unmagnetized regimes
We introduce and study a one dimensional model of classical planar spins interacting self-consistent...
The Hamiltonian Mean Field model describes a system of N fully-coupled particles showing a second-or...
We introduce a generalized Hamiltonian mean field model—an XY model with both linear and quadratic c...
The violent relaxation and the metastable states of the Hamiltonian Mean-Field model, a paradigmatic...
The out-of equilibrium dynamics of the Hamiltonian Mean Field (HMF) model is studied in presence of ...
International audienceOut of equilibrium magnetised solutions of the $XY$-Hamiltonian Mean Field ($X...
15 pagesInternational audienceIn this article, several aspects of the dynamics of a toy model for lo...
International audienceWhen starting from specific initial conditions, the ferromagnetic-like XY Hami...
18 pagesInternational audienceWe consider several models with long range interactions evolving via H...
We study the out-of-equilibrium properties of the antiferromagnetic Hamiltonian Mean-Field model at ...
The Hamiltonian mean-field model has been investigated, since its introduction about a decade ago, t...
We study the dynamics of a fully coupled network of N classical rotators, which can also be viewed a...
Recently, there has been some vigorous interest in the out-of-equilibrium quasistationary states (QS...
International audienceRecently, there has been some vigorous interest in the out-of-equilibrium quas...
The effect of nearest-neighbor coupling on the thermodynamic and dynamical properties of the ferroma...
We introduce and study a one dimensional model of classical planar spins interacting self-consistent...
The Hamiltonian Mean Field model describes a system of N fully-coupled particles showing a second-or...
We introduce a generalized Hamiltonian mean field model—an XY model with both linear and quadratic c...
The violent relaxation and the metastable states of the Hamiltonian Mean-Field model, a paradigmatic...
The out-of equilibrium dynamics of the Hamiltonian Mean Field (HMF) model is studied in presence of ...
International audienceOut of equilibrium magnetised solutions of the $XY$-Hamiltonian Mean Field ($X...
15 pagesInternational audienceIn this article, several aspects of the dynamics of a toy model for lo...
International audienceWhen starting from specific initial conditions, the ferromagnetic-like XY Hami...
18 pagesInternational audienceWe consider several models with long range interactions evolving via H...
We study the out-of-equilibrium properties of the antiferromagnetic Hamiltonian Mean-Field model at ...
The Hamiltonian mean-field model has been investigated, since its introduction about a decade ago, t...
We study the dynamics of a fully coupled network of N classical rotators, which can also be viewed a...
Recently, there has been some vigorous interest in the out-of-equilibrium quasistationary states (QS...
International audienceRecently, there has been some vigorous interest in the out-of-equilibrium quas...
The effect of nearest-neighbor coupling on the thermodynamic and dynamical properties of the ferroma...
We introduce and study a one dimensional model of classical planar spins interacting self-consistent...
The Hamiltonian Mean Field model describes a system of N fully-coupled particles showing a second-or...
We introduce a generalized Hamiltonian mean field model—an XY model with both linear and quadratic c...