The optical output of the free-electron laser for infrared experiments (FELIX), which operates in the regime of strong slippage, consists of picosecond pulses, Depending on the amount of cavity desynchronization, the optical pulse can develop substantial structure in the form of multiple subpulses, We present second-order autocorrelation measurements of the subpulses at several far-infrared wavelengths while applying a step-taper in the undulator field. The operation with a step-tapered undulator prevents the electrons from reabsorbing the optical field energy, leading to a smooth optical pulse, For different settings of the undulator the measured pulse shape and corresponding power spectrum are discussed, It is possible without decreasing ...
Coherent enhancement of the spontaneous undulator radiation by several orders of magnitude has been ...
The synchronous interaction between a light pulse and a pulsed relativistic electron beam in a hole-...
Free-electron lasers (FELs) are among the world's most intense artificial artificial sources of cohe...
The optical output of the free-electron laser for infrared experiments (FELIX), which operates in th...
We present measurements of the temporal and spectral properties of radiation produced from the step-...
The Free-Electron Laser user facility FELIX produces picosecond optical pulses in the wavelength ran...
We review the theory of free-electron laser (FEL) oscillators operating with tapered undulators. We ...
We have investigated the optical output of the free-electron laser for infrared experiments (FELIX) ...
We present an experimental and theoretical evaluation of a new method of enhancing the efficiency an...
We report experimental studies of the effect of undulator tapering on superradiance in a single-pass...
The Free-Electron Laser for Infrared eXperiments (FELIX) offers a unqiue combination of short electr...
The detailed shape of picosecond optical pulses from a free-electron laser (FEL) oscillator has been...
The free electron laser for infrared experiments (FELIX) operates at wavelengths up to lambda = 110 ...
The evolution of the longitudinal pulse shape and the spectrum of the short-pulse, far-infrared free...
A unique property of the free-electron laser (FEL) is its capability to be tuned continuously over a...
Coherent enhancement of the spontaneous undulator radiation by several orders of magnitude has been ...
The synchronous interaction between a light pulse and a pulsed relativistic electron beam in a hole-...
Free-electron lasers (FELs) are among the world's most intense artificial artificial sources of cohe...
The optical output of the free-electron laser for infrared experiments (FELIX), which operates in th...
We present measurements of the temporal and spectral properties of radiation produced from the step-...
The Free-Electron Laser user facility FELIX produces picosecond optical pulses in the wavelength ran...
We review the theory of free-electron laser (FEL) oscillators operating with tapered undulators. We ...
We have investigated the optical output of the free-electron laser for infrared experiments (FELIX) ...
We present an experimental and theoretical evaluation of a new method of enhancing the efficiency an...
We report experimental studies of the effect of undulator tapering on superradiance in a single-pass...
The Free-Electron Laser for Infrared eXperiments (FELIX) offers a unqiue combination of short electr...
The detailed shape of picosecond optical pulses from a free-electron laser (FEL) oscillator has been...
The free electron laser for infrared experiments (FELIX) operates at wavelengths up to lambda = 110 ...
The evolution of the longitudinal pulse shape and the spectrum of the short-pulse, far-infrared free...
A unique property of the free-electron laser (FEL) is its capability to be tuned continuously over a...
Coherent enhancement of the spontaneous undulator radiation by several orders of magnitude has been ...
The synchronous interaction between a light pulse and a pulsed relativistic electron beam in a hole-...
Free-electron lasers (FELs) are among the world's most intense artificial artificial sources of cohe...