We review the theory of free-electron laser (FEL) oscillators operating with tapered undulators. We have considered the case of a uniform tapering and introduced a parameter which characterizes the effect of the tapering on the gain and the saturation intensity. We have analyzed the effect of the tapering on the FEL dynamics by including the pulse propagation effects. We further analyze the importance of tapering as a tool to model the optical pulse shapes and to control the higher harmonic intensities
Energy extraction efficiency of a free electron laser (FEL) can be increased when the undulator is t...
A self-consistent theory of a free electron laser (FEL) with slowly varying beam and undulator param...
Free-electron lasers (FELs) are among the world's most intense artificial artificial sources of cohe...
The one-dimensional theory of short pulse propagation in free electron lasers is extended to tapered...
The optical output of the free-electron laser for infrared experiments (FELIX), which operates in th...
We report experimental studies of the effect of undulator tapering on superradiance in a single-pass...
The free-electron laser (FEL) is a device for converting kinetic energy in a relativistic electron b...
Theoretical issues in designing a high-extraction efficiency undulator for a free-electron laser osc...
We discuss the use of tapered undulators to enhance the performance of free-electron lasers (FELs) b...
In the present work the influence of tapering with respect of the FEL efficiency has been systematic...
The low-gain free-electron laser (FEL) oscillators are cutting-edge tools to produce fully coherent ...
Technique of undulator tapering in the post-saturation regime is used at the existing X-ray FELs for...
We present measurements of the temporal and spectral properties of radiation produced from the step-...
We analyze the behavior of Free Electron Laser (FEL) oscillators operating in the deep saturated reg...
We report new theoretical and numerical results in the following areas of FEL physics : A) Long puls...
Energy extraction efficiency of a free electron laser (FEL) can be increased when the undulator is t...
A self-consistent theory of a free electron laser (FEL) with slowly varying beam and undulator param...
Free-electron lasers (FELs) are among the world's most intense artificial artificial sources of cohe...
The one-dimensional theory of short pulse propagation in free electron lasers is extended to tapered...
The optical output of the free-electron laser for infrared experiments (FELIX), which operates in th...
We report experimental studies of the effect of undulator tapering on superradiance in a single-pass...
The free-electron laser (FEL) is a device for converting kinetic energy in a relativistic electron b...
Theoretical issues in designing a high-extraction efficiency undulator for a free-electron laser osc...
We discuss the use of tapered undulators to enhance the performance of free-electron lasers (FELs) b...
In the present work the influence of tapering with respect of the FEL efficiency has been systematic...
The low-gain free-electron laser (FEL) oscillators are cutting-edge tools to produce fully coherent ...
Technique of undulator tapering in the post-saturation regime is used at the existing X-ray FELs for...
We present measurements of the temporal and spectral properties of radiation produced from the step-...
We analyze the behavior of Free Electron Laser (FEL) oscillators operating in the deep saturated reg...
We report new theoretical and numerical results in the following areas of FEL physics : A) Long puls...
Energy extraction efficiency of a free electron laser (FEL) can be increased when the undulator is t...
A self-consistent theory of a free electron laser (FEL) with slowly varying beam and undulator param...
Free-electron lasers (FELs) are among the world's most intense artificial artificial sources of cohe...