Starting with Liouville's equation, a set of equations is derived in the random-phase approximation for the evolution of the spatial Fourier components of the complete distribution function of a particle in a plasma. A procedure is used which takes account of all the contributions coming from many-body interactions in the random-phase approximation. The equations thus describe the collective part of the response of plasma to the particle. The equations which have the structure of the Fokker-Planck equation describe collisions of electrons carrying an envelope of plasma waves emitted by them. It is shown that in the Markoff approximation this envelope degenerates into a Debye shielding cloud, so that in this approximation the equations descr...
International audienceIn the present study, we derive from kinetic theory a unified fluid model for ...
In this work we address the closure issue in kinetic and fluid descriptions of turbulent plasmas. In...
In a classic paper Max Planck derived an equation, now known as the Fokker-Planck equation, which pl...
Starting from the Liouville equation, a chain of equations is obtained by integrating out the coordi...
The evolution of a charged particle distribution function under the influence of coherent electromag...
We consider the derivation of a kinetic equation for a charged test particle weakly interacting with...
The Liouville equation is considered for relaxing dusty plasmas consisting initially of equilibrium ...
The Fokker-Planck equation describing a beam of charged particles entering a homogeneous medium is s...
A test-particle weakly interacting with an electrostatic plasma in equilibrium inside a uniform magn...
The Liouville equation is considered for relaxing dusty plasmas consisting initially of equilibrium ...
In the present contribution, we derive from kinetic theory a unified fluid model for multicomponent ...
An analysis is performed of the main stages in the expansion of an electron-photon plasma with colli...
Statistical plasma theory far from thermal equilibrium is subject to Liouville's equation, which is ...
The Liouville equation is considered for the statistical system consisting of identical constructure...
International audienceIn the present study, we derive from kinetic theory a unified fluid model for ...
In this work we address the closure issue in kinetic and fluid descriptions of turbulent plasmas. In...
In a classic paper Max Planck derived an equation, now known as the Fokker-Planck equation, which pl...
Starting from the Liouville equation, a chain of equations is obtained by integrating out the coordi...
The evolution of a charged particle distribution function under the influence of coherent electromag...
We consider the derivation of a kinetic equation for a charged test particle weakly interacting with...
The Liouville equation is considered for relaxing dusty plasmas consisting initially of equilibrium ...
The Fokker-Planck equation describing a beam of charged particles entering a homogeneous medium is s...
A test-particle weakly interacting with an electrostatic plasma in equilibrium inside a uniform magn...
The Liouville equation is considered for relaxing dusty plasmas consisting initially of equilibrium ...
In the present contribution, we derive from kinetic theory a unified fluid model for multicomponent ...
An analysis is performed of the main stages in the expansion of an electron-photon plasma with colli...
Statistical plasma theory far from thermal equilibrium is subject to Liouville's equation, which is ...
The Liouville equation is considered for the statistical system consisting of identical constructure...
International audienceIn the present study, we derive from kinetic theory a unified fluid model for ...
In this work we address the closure issue in kinetic and fluid descriptions of turbulent plasmas. In...
In a classic paper Max Planck derived an equation, now known as the Fokker-Planck equation, which pl...