Electron holes (EH) are localized modes in plasma kinetic theory which appear as vortices in phase space. Earlier research on EH is based on the Schamel distribution function (df). A novel df is proposed here, generalizing the original Schamel df in a recursive manner. Nonlinear solutions obtained by kinetic simulations are presented, with velocities twice the electron thermal speed. Using 1D-1V kinetic simulations, their propagation characteristics are traced and their stability is established by studying their long-time evolution and their behavior through mutual collisions
Solitons and electron holes are excited in a cylindrical pure electron plasma and their propagation ...
In this paper, we apply our recently developed energy-conserving discontinuous Galerkin (DG) methods...
The dynamics of electron holes (EHs) in an electron–oxygen-ion plasma is studied by means of Vlasov ...
Electron holes (EH) are localized modes in plasma kinetic theory which appear as vortices in phase s...
Thesis: Ph. D. in Applied Plasma Physics, Massachusetts Institute of Technology, Department of Nucle...
This article studies the vortical nature and structure of phase-space holes -- nonlinear B.G.K. trap...
We present a comprehensive review of recent theoretical and numerical studies of the formation and d...
It is shown through multidimensional particle-in-cell simulations that at least in Maxwellian backgr...
International audienceWe present a review of recent analytical and numerical studies of the dynamics...
This is a tutorial and selective review explaining the fundamental concepts and some currently open ...
Author's final manuscript February 10, 2012This work presents detailed experimental observations of ...
The pseudo-potential method is applied to derive diverse propagating electron–hole structures in a n...
In this paper, we report a new type of instability of electron holes (EHs) interacting with passing ...
International audienceOne-dimensional open-boundary simulations have been carried out in a current-c...
International audienceWe report here further results from the three-dimensional particle-in-cell sim...
Solitons and electron holes are excited in a cylindrical pure electron plasma and their propagation ...
In this paper, we apply our recently developed energy-conserving discontinuous Galerkin (DG) methods...
The dynamics of electron holes (EHs) in an electron–oxygen-ion plasma is studied by means of Vlasov ...
Electron holes (EH) are localized modes in plasma kinetic theory which appear as vortices in phase s...
Thesis: Ph. D. in Applied Plasma Physics, Massachusetts Institute of Technology, Department of Nucle...
This article studies the vortical nature and structure of phase-space holes -- nonlinear B.G.K. trap...
We present a comprehensive review of recent theoretical and numerical studies of the formation and d...
It is shown through multidimensional particle-in-cell simulations that at least in Maxwellian backgr...
International audienceWe present a review of recent analytical and numerical studies of the dynamics...
This is a tutorial and selective review explaining the fundamental concepts and some currently open ...
Author's final manuscript February 10, 2012This work presents detailed experimental observations of ...
The pseudo-potential method is applied to derive diverse propagating electron–hole structures in a n...
In this paper, we report a new type of instability of electron holes (EHs) interacting with passing ...
International audienceOne-dimensional open-boundary simulations have been carried out in a current-c...
International audienceWe report here further results from the three-dimensional particle-in-cell sim...
Solitons and electron holes are excited in a cylindrical pure electron plasma and their propagation ...
In this paper, we apply our recently developed energy-conserving discontinuous Galerkin (DG) methods...
The dynamics of electron holes (EHs) in an electron–oxygen-ion plasma is studied by means of Vlasov ...