The self-diffusion phenomenon in a two-dimensional dusty plasma at extremely strong (effective) magnetic fields is studied experimentally and by means of molecular dynamics simulations. In the experiment the high magnetic field is introduced by rotating the particle cloud and observing the particle trajectories in a corotating frame, which allows reaching effective magnetic fields up to 3000 T. The experimental results confirm the predictions of the simulations: (i) superdiffusive behavior is found at intermediate timescales and (ii) the dependence of the self-diffusion coefficient on the magnetic field is well reproduced
International audienceDirect numerical simulations of two-dimensional decaying MHD turbulence in bou...
This journal is © The Royal Society of Chemistry. Dispersions of paramagnetic colloids can be manipu...
Identifying the sources of the highest energy cosmic rays requires understanding how they are deflec...
The self-diffusion phenomenon in a two-dimensional dusty plasma at extremely strong (effective) magn...
Three-dimensionally extended dusty plasmas containing mixtures of two particle species of different ...
A molecular dynamics (MD) simulation method has been proposed for three-dimensional (3D) electrorheo...
Abstract. Strongly coupled plasmas in which the interaction energy exceeds the kinetic energy play a...
International audienceThe spontaneous self-organization of two-dimensional magnetized plasma is inve...
In this paper, we discuss the results of some molecular dynamics simulations of a magnetized one com...
We numerically simulated the diffusion of a charged Brownian particle confined to a plane under the ...
The transport of charged particles in disorganised magnetic fields is an important issue which conce...
A multifluid MHD model is applied to study the magnetic field dynamics in a dusty plasma. The motion...
Two-dimensional dusty plasmas can be realized experimentally and are examples of a classical many bo...
We study self-propulsion of a metal-coated grains, suspended in gas, under laser irradiation. The mo...
In the paper one of possible reasons for explanation of strange transport in the turbulent plasma in...
International audienceDirect numerical simulations of two-dimensional decaying MHD turbulence in bou...
This journal is © The Royal Society of Chemistry. Dispersions of paramagnetic colloids can be manipu...
Identifying the sources of the highest energy cosmic rays requires understanding how they are deflec...
The self-diffusion phenomenon in a two-dimensional dusty plasma at extremely strong (effective) magn...
Three-dimensionally extended dusty plasmas containing mixtures of two particle species of different ...
A molecular dynamics (MD) simulation method has been proposed for three-dimensional (3D) electrorheo...
Abstract. Strongly coupled plasmas in which the interaction energy exceeds the kinetic energy play a...
International audienceThe spontaneous self-organization of two-dimensional magnetized plasma is inve...
In this paper, we discuss the results of some molecular dynamics simulations of a magnetized one com...
We numerically simulated the diffusion of a charged Brownian particle confined to a plane under the ...
The transport of charged particles in disorganised magnetic fields is an important issue which conce...
A multifluid MHD model is applied to study the magnetic field dynamics in a dusty plasma. The motion...
Two-dimensional dusty plasmas can be realized experimentally and are examples of a classical many bo...
We study self-propulsion of a metal-coated grains, suspended in gas, under laser irradiation. The mo...
In the paper one of possible reasons for explanation of strange transport in the turbulent plasma in...
International audienceDirect numerical simulations of two-dimensional decaying MHD turbulence in bou...
This journal is © The Royal Society of Chemistry. Dispersions of paramagnetic colloids can be manipu...
Identifying the sources of the highest energy cosmic rays requires understanding how they are deflec...