We construct a novel class of exact solutions to the Boltzmann equation, in both its classical and quantum formulation, for arbitrary collision laws. When the system is subjected to a specific external forcing, the precise form of which is worked out, nonequilibrium dampingless solutions are admissible. They do not contradict the H theorem, but are constructed from its requirements. Interestingly, these solutions hold for time-dependent confinement. We exploit them, in a reverse-engineering perspective, to work out a protocol that shortcuts any adiabatic transformation between two equilibrium states in an arbitrarily short time span, for an interacting system. Particle simulations of the direct Monte Carlo type fully corroborate the analyti...
We present a family of steepest entropy ascent (SEA) models of the Boltzmann equation. The models pr...
International audienceNumerically solving the Boltzmann kinetic equations with the small Knudsen num...
A fully non-linear kinetic Boltzmann equation for anyons is studied in a periodic 1d setting with la...
Ludwig Boltzmann made tremendously important contributions to the problem of connecting macroscopic,...
textTextEcole d'ete de physique theorique. Les Houches, Haute-Savoie, FranceLecture notes by George ...
textTextEcole d'ete de physique theorique. Les Houches, Haute-Savoie, FranceLecture notes by George ...
The received wisdom in statistical mechanics is that isolated systems, when left to themselves, appr...
The received wisdom in statistical mechanics is that isolated systems, when left to themselves, appr...
A dilute gas initially in equilibrium and confined to half of an isolated box by a partition willirr...
A kinetic equation for a dilute gas of hard spheres confined between two parallel plates separated a...
In this thesis we develop a direct simulation Monte Carlo (DSMC) method for simulating highly nonequ...
International audienceWe study the Boltzmann equation with external forces, not necessarily deriving...
International audienceIn this paper, we propose a general time-discrete framework to design asymptot...
In this thesis we develop a direct simulation Monte Carlo (DSMC) method for simulating highly nonequ...
International audienceIn this paper, we propose a general time-discrete framework to design asymptot...
We present a family of steepest entropy ascent (SEA) models of the Boltzmann equation. The models pr...
International audienceNumerically solving the Boltzmann kinetic equations with the small Knudsen num...
A fully non-linear kinetic Boltzmann equation for anyons is studied in a periodic 1d setting with la...
Ludwig Boltzmann made tremendously important contributions to the problem of connecting macroscopic,...
textTextEcole d'ete de physique theorique. Les Houches, Haute-Savoie, FranceLecture notes by George ...
textTextEcole d'ete de physique theorique. Les Houches, Haute-Savoie, FranceLecture notes by George ...
The received wisdom in statistical mechanics is that isolated systems, when left to themselves, appr...
The received wisdom in statistical mechanics is that isolated systems, when left to themselves, appr...
A dilute gas initially in equilibrium and confined to half of an isolated box by a partition willirr...
A kinetic equation for a dilute gas of hard spheres confined between two parallel plates separated a...
In this thesis we develop a direct simulation Monte Carlo (DSMC) method for simulating highly nonequ...
International audienceWe study the Boltzmann equation with external forces, not necessarily deriving...
International audienceIn this paper, we propose a general time-discrete framework to design asymptot...
In this thesis we develop a direct simulation Monte Carlo (DSMC) method for simulating highly nonequ...
International audienceIn this paper, we propose a general time-discrete framework to design asymptot...
We present a family of steepest entropy ascent (SEA) models of the Boltzmann equation. The models pr...
International audienceNumerically solving the Boltzmann kinetic equations with the small Knudsen num...
A fully non-linear kinetic Boltzmann equation for anyons is studied in a periodic 1d setting with la...