International audienceWe experimentally investigate the statistical behavior of a model two-dimensional granular system undergoing stationary sedimentation. Buoyant cylindrical particles are rotated in a liquid-filled drum, thus confined in a harmonic centripetal potential with tunable curvature, which competes with gravity to produce various stationary states: though heterogeneous, the packing fraction of the system can be tuned from fully dispersed to crystallized as the rotation rate is increased. We show that this dynamical system is in mechanical equilibrium in the confining potential and exhibits a thermal-like behavior, where the granular pressure and the packing fraction are related through an equation of state. We obtain an express...
This work contains a novel approach for the study of stability in fluidized systems. It includes the...
Using simple scaling arguments and two-dimensional numerical simulations of a granular gas excited b...
AbstractGranular materials display more abundant dissipation phenomena than ordinary materials. In t...
International audienceWe experimentally investigate the statistical behavior of a model two-dimensio...
International audienceWe experimentally investigate the statistical behavior of a model two-dimensio...
International audienceWe experimentally investigate the statistical behavior of a model two-dimensio...
The thermal-like behavior of a two-dimensional granular suspension maintained in an out-of equilibri...
The thermal-like behavior of a two-dimensional granular suspension maintained in an out-of equilibri...
Les comportements thermiques d'une suspension granulaire en deux dimensions maintenue dans un état s...
We present experimental evidence for a strong analogy between quasi‐2D uniform non‐equilibrium stead...
International audienceIn this letter, we report results on the effect of temperature variations on a...
Granular materials exhibit a rich variety of dynamical behavior, much of which is poorly understood....
This work contains a novel approach for the study of stability in fluidized systems. It includes the...
We present experimental evidence for a strong analogy between quasi-2D uniform non-equilibrium stead...
Observation of the rotational brownian motion(1,2) of a very fine wire immersed in a gas led to one ...
This work contains a novel approach for the study of stability in fluidized systems. It includes the...
Using simple scaling arguments and two-dimensional numerical simulations of a granular gas excited b...
AbstractGranular materials display more abundant dissipation phenomena than ordinary materials. In t...
International audienceWe experimentally investigate the statistical behavior of a model two-dimensio...
International audienceWe experimentally investigate the statistical behavior of a model two-dimensio...
International audienceWe experimentally investigate the statistical behavior of a model two-dimensio...
The thermal-like behavior of a two-dimensional granular suspension maintained in an out-of equilibri...
The thermal-like behavior of a two-dimensional granular suspension maintained in an out-of equilibri...
Les comportements thermiques d'une suspension granulaire en deux dimensions maintenue dans un état s...
We present experimental evidence for a strong analogy between quasi‐2D uniform non‐equilibrium stead...
International audienceIn this letter, we report results on the effect of temperature variations on a...
Granular materials exhibit a rich variety of dynamical behavior, much of which is poorly understood....
This work contains a novel approach for the study of stability in fluidized systems. It includes the...
We present experimental evidence for a strong analogy between quasi-2D uniform non-equilibrium stead...
Observation of the rotational brownian motion(1,2) of a very fine wire immersed in a gas led to one ...
This work contains a novel approach for the study of stability in fluidized systems. It includes the...
Using simple scaling arguments and two-dimensional numerical simulations of a granular gas excited b...
AbstractGranular materials display more abundant dissipation phenomena than ordinary materials. In t...