Brownian motion in a granular gas in a homogeneous cooling state is studied theoretically and by means of molecular dynamics. We use the simplest first-principles model for the impact-velocity dependent restitution coefficient, as it follows for the model of viscoelastic spheres. We reveal that for a wide range of initial conditions the ratio of granular temperatures of Brownian and bath particles demonstrates complicated nonmonotonic behavior, which results in a transition between different regimes of Brownian dynamics: It starts from the ballistic motion, switches later to a superballistic one, and turns at still later times into subdiffusion; eventually normal diffusion is achieved. Our theory agrees very well with the molecular dynamics...
A gas of inelastically colliding hard spheres (the so called granular gas) is a simple model of flow...
doi:10.1088/1367-2630/7/1/028 Abstract. Understanding the behaviour of granular media, either at res...
We study dynamics of freely cooling granular gases in two dimensions using large-scale molecular dyn...
Brownian motion in a granular gas in a homogeneous cooling state is studied theoretically and by mea...
The dynamics of a heavy particle in a gas of much lighter particles is studied via the Boltzmann-Lor...
We study the stochastic motion of an intruder in a dilute driven granular gas. All particles are cou...
We study the stochastic motion of an intruder in a dilute driven granular gas. All particles are cou...
Brownian diffusion of particles with Knudsen number large compared to one is analyzed both in equili...
A freely cooling granular gas with a velocity-dependent restitution coefficient is studied in one di...
We study numerically the motion of a one dimensional array of Brownian particles in a washboard pote...
We study numerically the motion of a one dimensional array of Brownian particles in a washboard pote...
We study numerically the motion of a one dimensional array of Brownian particles in a washboard pote...
We study the stochastic motion of an intruder in a dilute driven granular gas. All particles are cou...
We use large-scale molecular dynamics simulations to study freely evolving granular gases with dimen...
The interplay between Coulomb friction and random excitations is studied experimentally by means of ...
A gas of inelastically colliding hard spheres (the so called granular gas) is a simple model of flow...
doi:10.1088/1367-2630/7/1/028 Abstract. Understanding the behaviour of granular media, either at res...
We study dynamics of freely cooling granular gases in two dimensions using large-scale molecular dyn...
Brownian motion in a granular gas in a homogeneous cooling state is studied theoretically and by mea...
The dynamics of a heavy particle in a gas of much lighter particles is studied via the Boltzmann-Lor...
We study the stochastic motion of an intruder in a dilute driven granular gas. All particles are cou...
We study the stochastic motion of an intruder in a dilute driven granular gas. All particles are cou...
Brownian diffusion of particles with Knudsen number large compared to one is analyzed both in equili...
A freely cooling granular gas with a velocity-dependent restitution coefficient is studied in one di...
We study numerically the motion of a one dimensional array of Brownian particles in a washboard pote...
We study numerically the motion of a one dimensional array of Brownian particles in a washboard pote...
We study numerically the motion of a one dimensional array of Brownian particles in a washboard pote...
We study the stochastic motion of an intruder in a dilute driven granular gas. All particles are cou...
We use large-scale molecular dynamics simulations to study freely evolving granular gases with dimen...
The interplay between Coulomb friction and random excitations is studied experimentally by means of ...
A gas of inelastically colliding hard spheres (the so called granular gas) is a simple model of flow...
doi:10.1088/1367-2630/7/1/028 Abstract. Understanding the behaviour of granular media, either at res...
We study dynamics of freely cooling granular gases in two dimensions using large-scale molecular dyn...