We study the dynamics of a granular gas heated by a stochastic thermostat. From a Boltzmann description, we derive the hydrodynamic equations for small perturbations around the stationary state that is reached in the long time limit. Transport coefficients are identified as Green-Kubo formulas obtaining explicit expressions as a function of the inelasticity and the spatial dimensio
We analyze the transport properties of a low density ensemble of identical macroscopic particles imm...
The steady state of a low-density gas of inelastic hard spheres confined between two parallel walls ...
We analyze the transport properties of a low density ensemble of identical macroscopic particles imm...
Small perturbations of the homogeneous cooling state for a low density granular gas are described by...
We study the time evolution of the one-particle distribution function of a granular gas heated by th...
We study a granular gas heated by a stochastic thermostat in the dilute limit. Starting from the kin...
The hydrodynamic equation governing the homogeneous time evolution of the temperature in a model of ...
In this work we present an extension of the well-known particle based stochastic rotation dynamics m...
The direct Monte Carlo simulation method is used to check the validity of the hydrodynamic descripti...
This book addresses the study of the gaseous state of granular matter in the conditions of rapid flo...
The dynamics of a heavy particle in a gas of much lighter particles is studied via the Boltzmann-Lor...
We investigate a lattice model representing a granular gas in a thin channel. We deduce the hydrodyn...
In the present paper we give an overview of the analytical properties of the steady state solution o...
We analyze the linear response properties of the uniformly heated granular gas. The intensity of the...
We analyze the transport properties of a low density ensemble of identical macroscopic particles imm...
We analyze the transport properties of a low density ensemble of identical macroscopic particles imm...
The steady state of a low-density gas of inelastic hard spheres confined between two parallel walls ...
We analyze the transport properties of a low density ensemble of identical macroscopic particles imm...
Small perturbations of the homogeneous cooling state for a low density granular gas are described by...
We study the time evolution of the one-particle distribution function of a granular gas heated by th...
We study a granular gas heated by a stochastic thermostat in the dilute limit. Starting from the kin...
The hydrodynamic equation governing the homogeneous time evolution of the temperature in a model of ...
In this work we present an extension of the well-known particle based stochastic rotation dynamics m...
The direct Monte Carlo simulation method is used to check the validity of the hydrodynamic descripti...
This book addresses the study of the gaseous state of granular matter in the conditions of rapid flo...
The dynamics of a heavy particle in a gas of much lighter particles is studied via the Boltzmann-Lor...
We investigate a lattice model representing a granular gas in a thin channel. We deduce the hydrodyn...
In the present paper we give an overview of the analytical properties of the steady state solution o...
We analyze the linear response properties of the uniformly heated granular gas. The intensity of the...
We analyze the transport properties of a low density ensemble of identical macroscopic particles imm...
We analyze the transport properties of a low density ensemble of identical macroscopic particles imm...
The steady state of a low-density gas of inelastic hard spheres confined between two parallel walls ...
We analyze the transport properties of a low density ensemble of identical macroscopic particles imm...