In contrast to molecular gases, granular gases are characterized by inelastic collisions and require therefore permanent driving to maintain a constant kinetic energy. The kinetic theory of granular gases describes how the average velocity of the particles decreases after the driving is shut off. Moreover, it predicts that the rescaled particle velocity distribution will approach a stationary state with overpopulated high-velocity tails as compared to the Maxwell-Boltzmann distribution. While this fundamental theoretical result was reproduced by numerical simulations, an experimental confirmation is still missing. Using a microgravity experiment that allows the spatially homogeneous excitation of spheres via magnetic fields, we confirm the ...
Summary Although all macroscopic grains are frictional, most of the theoretical studies of granular ...
The transport coefficients of a dilute gas of inelastic hard spheres immersed in a molecular gas are...
The dynamics of a heavy particle in a gas of much lighter particles is studied via the Boltzmann-Lor...
In contrast to molecular gases, granular gases are characterized by inelastic collisions and require...
In contrast to molecular gases, granular gases are characterized by inelastic collisions and require...
The kinetic energy of a force-free granular gas decays monotonously due to inelastic collisions of t...
The kinetic theory of granular gases is studied for spatially homogeneous systems. At large velociti...
Some years ago, Harth et al. experimentally explored the steady state dynamics of a heated granular ...
We use large-scale molecular dynamics simulations to study freely evolving granular gases with dimen...
The homogeneous cooling state of a granular flow of smooth spherical particles described by the Bolt...
We prove the so-called generalized Haff's law yielding the optimal algebraic cooling rate of the tem...
We prove the so-called generalized Haff's law yielding the optimal algebraic cooling rate of the tem...
We experimentally investigate the velocity distributions of quasi two-dimensional granular materials...
Aim of this theses is to elucidate the role of rotational degrees of freedom in a system of freely c...
We compute the mean square displacement (MSD) of intruders immersed in a freely cooling granular gas...
Summary Although all macroscopic grains are frictional, most of the theoretical studies of granular ...
The transport coefficients of a dilute gas of inelastic hard spheres immersed in a molecular gas are...
The dynamics of a heavy particle in a gas of much lighter particles is studied via the Boltzmann-Lor...
In contrast to molecular gases, granular gases are characterized by inelastic collisions and require...
In contrast to molecular gases, granular gases are characterized by inelastic collisions and require...
The kinetic energy of a force-free granular gas decays monotonously due to inelastic collisions of t...
The kinetic theory of granular gases is studied for spatially homogeneous systems. At large velociti...
Some years ago, Harth et al. experimentally explored the steady state dynamics of a heated granular ...
We use large-scale molecular dynamics simulations to study freely evolving granular gases with dimen...
The homogeneous cooling state of a granular flow of smooth spherical particles described by the Bolt...
We prove the so-called generalized Haff's law yielding the optimal algebraic cooling rate of the tem...
We prove the so-called generalized Haff's law yielding the optimal algebraic cooling rate of the tem...
We experimentally investigate the velocity distributions of quasi two-dimensional granular materials...
Aim of this theses is to elucidate the role of rotational degrees of freedom in a system of freely c...
We compute the mean square displacement (MSD) of intruders immersed in a freely cooling granular gas...
Summary Although all macroscopic grains are frictional, most of the theoretical studies of granular ...
The transport coefficients of a dilute gas of inelastic hard spheres immersed in a molecular gas are...
The dynamics of a heavy particle in a gas of much lighter particles is studied via the Boltzmann-Lor...