The performance of a free electron lasers (FEL) is affected when the electron beam energy varies alone the undulator as would be caused by vacuum pipe wakefields and/or when the undulator strength parameter is tapered in the small signal regime until FEL saturation. In this paper, we present a self-consistent theory of FELs with slowly-varying beam and undulator parameters. A general method is developed to apply the WKB approximation to the beam-radiation system by employing the adjoint eigenvector that is orthogonal to the eigenfunctions of the coupled Maxwell-Vlasov equations. This method may be useful for other slowly varying processes in beam dynamics
In a free electron laser (FEL) oscillator, the optical pulse evolves through mode competition as a ...
The authors investigate finite pulse effects in self-amplified spontaneous emission (SASE), especial...
The use of a transverse gradient undulator (TGU) is viewed as an attractive option for free-electron...
A self-consistent theory of a free electron laser (FEL) with slowly varying beam and undulator param...
Energy extraction efficiency of a free electron laser (FEL) can be increased when the undulator is t...
The present paper contains a systematic exposure of basic principles of free electron laser physics....
The use of laser (or RF) undulators is nowadays con-sidered attractive for FEL applications, particu...
A self-consistent de.cription of the free electron laser instability is developed for a relativistic...
We show that the paraxial field equation for a free electron laser (FEL) in an infinitely wide elect...
The beam dynamics and operation of a free electron laser are discussed after a description of accele...
The free-electron laser (FEL) is a device for converting kinetic energy in a relativistic electron b...
In a free electron laser (FEL), the electron beam at the undulator entrance can have a correlated en...
We study the behavior of a free electron laser in the high gain regime, and the conditions for the e...
We present a two-dimensional nonlinear self-consistent theory on the free electron laser (FEL) ampli...
We propose a new approach, based on statistical mechanics, to predict the saturated state of a singl...
In a free electron laser (FEL) oscillator, the optical pulse evolves through mode competition as a ...
The authors investigate finite pulse effects in self-amplified spontaneous emission (SASE), especial...
The use of a transverse gradient undulator (TGU) is viewed as an attractive option for free-electron...
A self-consistent theory of a free electron laser (FEL) with slowly varying beam and undulator param...
Energy extraction efficiency of a free electron laser (FEL) can be increased when the undulator is t...
The present paper contains a systematic exposure of basic principles of free electron laser physics....
The use of laser (or RF) undulators is nowadays con-sidered attractive for FEL applications, particu...
A self-consistent de.cription of the free electron laser instability is developed for a relativistic...
We show that the paraxial field equation for a free electron laser (FEL) in an infinitely wide elect...
The beam dynamics and operation of a free electron laser are discussed after a description of accele...
The free-electron laser (FEL) is a device for converting kinetic energy in a relativistic electron b...
In a free electron laser (FEL), the electron beam at the undulator entrance can have a correlated en...
We study the behavior of a free electron laser in the high gain regime, and the conditions for the e...
We present a two-dimensional nonlinear self-consistent theory on the free electron laser (FEL) ampli...
We propose a new approach, based on statistical mechanics, to predict the saturated state of a singl...
In a free electron laser (FEL) oscillator, the optical pulse evolves through mode competition as a ...
The authors investigate finite pulse effects in self-amplified spontaneous emission (SASE), especial...
The use of a transverse gradient undulator (TGU) is viewed as an attractive option for free-electron...