We investigate velocity statistics of an impurity immersed in a uniform granular fluid. We consider the cooling phase, and obtain scaling solutions of the inelastic Maxwell model analytically. First, we analyze identical fluid-fluid and fluid-impurity collision rates. We show that light impurities have similar velocity statistics as the fluid background, although their temperature is generally different. Asymptotically, the temperature ratio increases with the impurity mass, and it diverges at some critical mass. Impurities heavier than this critical mass essentially scatter off a static fluid background. We then analyze an improved inelastic Maxwell model with collision rates that are proportional to the average fluid-fluid and ...
The motion of passively advected impurities with density ρp different from the fluid density ρf in s...
A recently introduced model describing—on a 1d lattice—the velocity field of a granular fluid is dis...
We investigate the idea that velocity distributions in granular gases are determined mainly by η, th...
Dynamics of inelastic gases are studied within the framework of random collision processes. The corr...
The title has been changed. The paper has been enlarged with respect to our first version. 13 pages,...
We study in this work the dynamics of a granular impurity immersed in a low-density granular gas of ...
The hydrodynamic state of an impurity immersed in a low density granular gas is analyzed. Explicit e...
We use a mobile impurity or depleton model to study elementary excitations in one-dimensional integ...
The Boltzmann equation for d-dimensional inelastic Maxwell models is considered to determine the col...
We study the effect of heavy impurities on the dynamics of supercooled liquids. In a supercooled liq...
The nature of the velocity distribution of a driven granular gas, though well studied, is unknown as...
This brief offers a concise presentation of granular fluids from the point of view of non-equilibri...
A gas of inelastically colliding hard spheres (the so called granular gas) is a simple model of flow...
International audienceThe homogeneous Boltzmann equation for inelastic Maxwell mixtures is considere...
The leading order "temperature" of a dense two-dimensional granular material fluidized by external v...
The motion of passively advected impurities with density ρp different from the fluid density ρf in s...
A recently introduced model describing—on a 1d lattice—the velocity field of a granular fluid is dis...
We investigate the idea that velocity distributions in granular gases are determined mainly by η, th...
Dynamics of inelastic gases are studied within the framework of random collision processes. The corr...
The title has been changed. The paper has been enlarged with respect to our first version. 13 pages,...
We study in this work the dynamics of a granular impurity immersed in a low-density granular gas of ...
The hydrodynamic state of an impurity immersed in a low density granular gas is analyzed. Explicit e...
We use a mobile impurity or depleton model to study elementary excitations in one-dimensional integ...
The Boltzmann equation for d-dimensional inelastic Maxwell models is considered to determine the col...
We study the effect of heavy impurities on the dynamics of supercooled liquids. In a supercooled liq...
The nature of the velocity distribution of a driven granular gas, though well studied, is unknown as...
This brief offers a concise presentation of granular fluids from the point of view of non-equilibri...
A gas of inelastically colliding hard spheres (the so called granular gas) is a simple model of flow...
International audienceThe homogeneous Boltzmann equation for inelastic Maxwell mixtures is considere...
The leading order "temperature" of a dense two-dimensional granular material fluidized by external v...
The motion of passively advected impurities with density ρp different from the fluid density ρf in s...
A recently introduced model describing—on a 1d lattice—the velocity field of a granular fluid is dis...
We investigate the idea that velocity distributions in granular gases are determined mainly by η, th...