A self-consistent nonlinear hydrodynamic theory is presented of the propagation of a long and thin relativistic electron beam through a plasma that is relatively strongly magnetized. Such situation is encountered when the gyro-frequency is comparable to the plasma frequency, i.e. |Ωe| ~ ωpe. In addition, it is assumed the plasma density is much bigger than that of the beam. In the regime when the solution propagates in the comoving frame with a velocity that is much smaller than the thermal speed, a nonlinear stationary beam structure is found in which the electron motion in the transverse direction is negligible and whose transverse localization comes from the nonlinearity associated with its 3-D adiabatic expansion. Conversely, when the p...
We demonstrate that a relativistic electron beam is properly described in the moving frame by the el...
The nonlinear dynamics of an inhomogeneous plasma with hot electrons and cold ions, in the frequency...
Axisymmetric radial modes of fast electron beams propagating through dense background plasmas with a...
A self-consistent nonlinear hydrodynamic theory is presented of the propagation of a long and thin ...
A self-consistent nonlinear hydrodynamic theory is presented of the propagation of a long and thin ...
A self-consistent nonlinear hydrodynamic theory is presented of the propagation of a long and thin ...
A self-consistent nonlinear hydrodynamic theory is presented of the propagation of a long and thin ...
A self-consistent nonlinear hydrodynamic theory is presented of the propagation of a long and thin ...
A self-consistent nonlinear hydrodynamic theory is presented of the propagation of a long and thin ...
We study the linear instabilities experienced by a relativistic electron beam passing through a plas...
We study the linear instabilities experienced by a relativistic electron beam passing through a plas...
We demonstrate that a relativistic electron beam is properly described in the moving frame by the el...
Abstract: The nonlinear interaction of the ultrarelativistic electron beam with cold fixe...
We demonstrate that a relativistic electron beam is properly described in the moving frame by the el...
We demonstrate that a relativistic electron beam is properly described in the moving frame by the el...
We demonstrate that a relativistic electron beam is properly described in the moving frame by the el...
The nonlinear dynamics of an inhomogeneous plasma with hot electrons and cold ions, in the frequency...
Axisymmetric radial modes of fast electron beams propagating through dense background plasmas with a...
A self-consistent nonlinear hydrodynamic theory is presented of the propagation of a long and thin ...
A self-consistent nonlinear hydrodynamic theory is presented of the propagation of a long and thin ...
A self-consistent nonlinear hydrodynamic theory is presented of the propagation of a long and thin ...
A self-consistent nonlinear hydrodynamic theory is presented of the propagation of a long and thin ...
A self-consistent nonlinear hydrodynamic theory is presented of the propagation of a long and thin ...
A self-consistent nonlinear hydrodynamic theory is presented of the propagation of a long and thin ...
We study the linear instabilities experienced by a relativistic electron beam passing through a plas...
We study the linear instabilities experienced by a relativistic electron beam passing through a plas...
We demonstrate that a relativistic electron beam is properly described in the moving frame by the el...
Abstract: The nonlinear interaction of the ultrarelativistic electron beam with cold fixe...
We demonstrate that a relativistic electron beam is properly described in the moving frame by the el...
We demonstrate that a relativistic electron beam is properly described in the moving frame by the el...
We demonstrate that a relativistic electron beam is properly described in the moving frame by the el...
The nonlinear dynamics of an inhomogeneous plasma with hot electrons and cold ions, in the frequency...
Axisymmetric radial modes of fast electron beams propagating through dense background plasmas with a...