A kinetic analysis of the nonlinear evolution of the free-electron-laser (FEL) instability is presented. The governing equations are the coupled Vlasov-Maxwell equations, which are investigated for a system consisting of a relativistic electron beam propagating through a helical wiggler magnetic field. Assuming that a single cavity mode of the electromagnetic field takes part in the lasing, a general nonlinear solution of the Vlasov equation is obtained in the resolvent formalism. Use of this solution in the wave equation provides a nonlinear description of the FEL. The saturation properties of the FEL are discussed by numerical and analytical solutions of this equation
The beam dynamics and operation of a free electron laser are discussed after a description of accele...
A nonlinear model of two-beam free-electron laser (FEL) in the absence of slippage is presented. The...
We analyze free-electron-laser (FEL) oscillations in a perfectly synchronized optical cavity by solv...
A kinetic analysis of the nonlinear evolution of the free-electron-laser (FEL) instability is presen...
We investigate nonlinear electromagnetic waves in a system which consists of an intense, cold-fluid ...
The free-electron laser (FEL) is a device for converting kinetic energy in a relativistic electron b...
A self-consistent de.cription of the free electron laser instability is developed for a relativistic...
The class of large-amplitude travelling wave solutions to the nonlinear Vlasov-Maxwell equations are...
The free electron laser instability is investigated for a relativistic annular electron beam propaga...
A self-consistent theory of a free-electron laser is developed by the kinetic approach, using the me...
A new class of nonlinear traveling-wave solutions of the relativistic cold-fluid model are presented...
A wave particle description of a single-pass free-electron laser (FEL) leads to different dynamical ...
Multiple-scale perturbation theory is used to obtain periodic orbits of relativistic elec-trons in t...
A linear stability analysis of the collective Raman interaction in a free-electron laser with combin...
A nonlinear analysis of Free-Electron Laser amplifiers in three-dimensions is described. A set of co...
The beam dynamics and operation of a free electron laser are discussed after a description of accele...
A nonlinear model of two-beam free-electron laser (FEL) in the absence of slippage is presented. The...
We analyze free-electron-laser (FEL) oscillations in a perfectly synchronized optical cavity by solv...
A kinetic analysis of the nonlinear evolution of the free-electron-laser (FEL) instability is presen...
We investigate nonlinear electromagnetic waves in a system which consists of an intense, cold-fluid ...
The free-electron laser (FEL) is a device for converting kinetic energy in a relativistic electron b...
A self-consistent de.cription of the free electron laser instability is developed for a relativistic...
The class of large-amplitude travelling wave solutions to the nonlinear Vlasov-Maxwell equations are...
The free electron laser instability is investigated for a relativistic annular electron beam propaga...
A self-consistent theory of a free-electron laser is developed by the kinetic approach, using the me...
A new class of nonlinear traveling-wave solutions of the relativistic cold-fluid model are presented...
A wave particle description of a single-pass free-electron laser (FEL) leads to different dynamical ...
Multiple-scale perturbation theory is used to obtain periodic orbits of relativistic elec-trons in t...
A linear stability analysis of the collective Raman interaction in a free-electron laser with combin...
A nonlinear analysis of Free-Electron Laser amplifiers in three-dimensions is described. A set of co...
The beam dynamics and operation of a free electron laser are discussed after a description of accele...
A nonlinear model of two-beam free-electron laser (FEL) in the absence of slippage is presented. The...
We analyze free-electron-laser (FEL) oscillations in a perfectly synchronized optical cavity by solv...