A two-dimensional system of particles with tunable repulsive interactions is experimentally investigated. Soft ferromagnetic particles are placed on a vibrating rough plate and vertically confined, so that they perform a horizontal Brownian motion in a cell. When immersed in an external vertical magnetic field, the particles become magnetised and thus interact according to a dipolar repulsive law. As the amplitude of the magnetic field is increased, magnetic repulsion raises and the rate of inelastic collisions decreases. Studying notably the pair correlation function and the particle velocity distributions, we show that the typical properties of such a dissipative out-of-equilibrium granular gas are progressively lost, to approach those ex...
The intriguing properties of magnetic nanoparticles have sparked a growing number of theoretical stu...
Dense systems of magnetic nanoparticles may exhibit dipolar collective behavior. However, two fundam...
Micron-sized colloids have long been used as model systems to study the dynamic and thermodynamic be...
International audienceAthermal two-dimensional granular systems are exposed to external mechanical n...
Thermodynamics and dynamics of a classical two-dimensional system with dipolelike isotropic repulsiv...
Above a certain density a granular material jams. This property can be controlled by either tuning a...
We report an experimental study of a dilute “gas” of magnetic particles subjected to a vertical alte...
We experimentally study the aggregation of small clusters made of non-Brownian dipolar beads in a vi...
The magnetic relaxation and hysteresis of a system of single domain particles with dipolar interacti...
International audienceDriven granular media constitute model systems in out-of-equilibrium statistic...
A degenerate Fermi gas is rapidly quenched into the regime of strong effective repulsion near a Fesh...
We describe experiments on binary mixtures of superparamagnetic colloidal particles confined by grav...
Granular matter is a collection of solid particles which inelastically collide with each other with ...
We report on a Brownian dynamics simulation study of quasi-two-dimensional dispersions of colloidal ...
We consider an ensemble of grains that interact through a dipole-dipole interaction. A granular gas ...
The intriguing properties of magnetic nanoparticles have sparked a growing number of theoretical stu...
Dense systems of magnetic nanoparticles may exhibit dipolar collective behavior. However, two fundam...
Micron-sized colloids have long been used as model systems to study the dynamic and thermodynamic be...
International audienceAthermal two-dimensional granular systems are exposed to external mechanical n...
Thermodynamics and dynamics of a classical two-dimensional system with dipolelike isotropic repulsiv...
Above a certain density a granular material jams. This property can be controlled by either tuning a...
We report an experimental study of a dilute “gas” of magnetic particles subjected to a vertical alte...
We experimentally study the aggregation of small clusters made of non-Brownian dipolar beads in a vi...
The magnetic relaxation and hysteresis of a system of single domain particles with dipolar interacti...
International audienceDriven granular media constitute model systems in out-of-equilibrium statistic...
A degenerate Fermi gas is rapidly quenched into the regime of strong effective repulsion near a Fesh...
We describe experiments on binary mixtures of superparamagnetic colloidal particles confined by grav...
Granular matter is a collection of solid particles which inelastically collide with each other with ...
We report on a Brownian dynamics simulation study of quasi-two-dimensional dispersions of colloidal ...
We consider an ensemble of grains that interact through a dipole-dipole interaction. A granular gas ...
The intriguing properties of magnetic nanoparticles have sparked a growing number of theoretical stu...
Dense systems of magnetic nanoparticles may exhibit dipolar collective behavior. However, two fundam...
Micron-sized colloids have long been used as model systems to study the dynamic and thermodynamic be...