We present a review of recent analytical and numerical studies of the dynamics of electron and ion holes in a collisionless plasma. The new results are based on the class of analytic solutions which were found by Schamel more than three decades ago, and which here work as initial conditions to numerical simulations of the dynamics of ion and electron holes and their interaction with radiation and the background plasma. Our analytic and numerical studies reveal that ion holes in an electron-ion plasma can trap Langmuir waves, due the local electron density depletion associated with the negative ion hole potential. Since the scale-length of the ion holes are on a relatively small Debye scale, the trapped Langmuir waves are Landau damped. We a...
This is a tutorial and selective review explaining the fundamental concepts and some currently open ...
We report here further results from the three-dimensional particle-in-cell simulations of the elec...
International audienceNumerical simulations recover ultra slow solitary electron holes (SEH) of elec...
We present a review of recent analytical and numerical studies of the dynamics of electron and ion h...
We present a comprehensive review of recent theoretical and numerical studies of the formation and d...
Analytical and numerical studies of the dynamics of relativistic electron and ion holes in a collisi...
The dynamics of electron holes (EHs) in an electron–oxygen-ion plasma is studied by means of Vlasov ...
We present new simulation studies exhibiting production of nonisothermal electron distributions and ...
We present analytical and numerical studies of a new electron plasma wave interaction mechanism whic...
We present analytical and numerical studies of a new electron plasma wave interaction mechanism, whi...
This article studies the vortical nature and structure of phase-space holes -- nonlinear B.G.K. trap...
Direct numerical simulations of electron dynamics in externally driven electrostatic waves have been...
Thesis: Ph. D. in Applied Plasma Physics, Massachusetts Institute of Technology, Department of Nucle...
The generation of "trains" of electron holes in phase space due to an external electrostatic disturb...
Theoretical and numerical studies of relativistic ion holes in a relativistically hot electron–ion p...
This is a tutorial and selective review explaining the fundamental concepts and some currently open ...
We report here further results from the three-dimensional particle-in-cell simulations of the elec...
International audienceNumerical simulations recover ultra slow solitary electron holes (SEH) of elec...
We present a review of recent analytical and numerical studies of the dynamics of electron and ion h...
We present a comprehensive review of recent theoretical and numerical studies of the formation and d...
Analytical and numerical studies of the dynamics of relativistic electron and ion holes in a collisi...
The dynamics of electron holes (EHs) in an electron–oxygen-ion plasma is studied by means of Vlasov ...
We present new simulation studies exhibiting production of nonisothermal electron distributions and ...
We present analytical and numerical studies of a new electron plasma wave interaction mechanism whic...
We present analytical and numerical studies of a new electron plasma wave interaction mechanism, whi...
This article studies the vortical nature and structure of phase-space holes -- nonlinear B.G.K. trap...
Direct numerical simulations of electron dynamics in externally driven electrostatic waves have been...
Thesis: Ph. D. in Applied Plasma Physics, Massachusetts Institute of Technology, Department of Nucle...
The generation of "trains" of electron holes in phase space due to an external electrostatic disturb...
Theoretical and numerical studies of relativistic ion holes in a relativistically hot electron–ion p...
This is a tutorial and selective review explaining the fundamental concepts and some currently open ...
We report here further results from the three-dimensional particle-in-cell simulations of the elec...
International audienceNumerical simulations recover ultra slow solitary electron holes (SEH) of elec...