Because of the stochastic nature of self-amplified spontaneous emission (SASE), it is crucial to measure for single pulses the spectral characteristics of ultrashort pulses from the vacuum ultraviolet free electron laser (FLASH) at DESY, Germany. To meet this particular challenge, we have employed both photon and photoelectron spectroscopy. Each FEL pulse is composed of an intense and spectrally complex fundamental, centered at a photon energy of about 38.5 eV, with a bandwidth of 0.5% accompanied by higher harmonics, each carrying an intensity of typically 0.3 to 0.6% of that of the fundamental. The correlation between the harmonics and the fundamental is in remarkable agreement with a simple statistical model of SASE FEL radiation
International audienceThe single-shot spatial characteristics of the vacuum ultraviolet self-amplifi...
A single-pass free-electron laser operating in the self-amplified spontaneous-emission (SASE) mode a...
For photon diagnostics at free-electron lasers (FELs), the determination of the photon pulse duratio...
Because of the stochastic nature of self-amplified spontaneous emission (SASE), it is crucial to mea...
Because of the stochastic nature of self-amplified spontaneous emission (SASE), it is crucial to mea...
Experimental results are presented from vacuum-ultraviolet free-electron laser (FEL) operating in th...
One of the most challenging tasks for extreme ultraviolet, soft and hard x-ray free-electron laser p...
Experimental results are presented from vacuum-ultraviolet free-electron laser (FEL) operating in th...
We present the first observation of self-amplified spontaneous emission (SASE) in a free-electron la...
We present the first observation of Self-Amplified Spontaneous Emission (SASE) in a free-electron la...
During the last few years free electron lasers (FELs) based on self-amplified spontaneous emission ...
Self-amplified spontaneous emission (SASE) free-electron lasers (FELs) deliver ultrashort pulses wit...
The Fano absorption line shape of an autoionizing state encodes information on its internal atomic s...
The stochastic nature of the self-amplified spontaneous emission (SASE) process of free-electron las...
International audienceThe single-shot spatial characteristics of the vacuum ultraviolet self-amplifi...
A single-pass free-electron laser operating in the self-amplified spontaneous-emission (SASE) mode a...
For photon diagnostics at free-electron lasers (FELs), the determination of the photon pulse duratio...
Because of the stochastic nature of self-amplified spontaneous emission (SASE), it is crucial to mea...
Because of the stochastic nature of self-amplified spontaneous emission (SASE), it is crucial to mea...
Experimental results are presented from vacuum-ultraviolet free-electron laser (FEL) operating in th...
One of the most challenging tasks for extreme ultraviolet, soft and hard x-ray free-electron laser p...
Experimental results are presented from vacuum-ultraviolet free-electron laser (FEL) operating in th...
We present the first observation of self-amplified spontaneous emission (SASE) in a free-electron la...
We present the first observation of Self-Amplified Spontaneous Emission (SASE) in a free-electron la...
During the last few years free electron lasers (FELs) based on self-amplified spontaneous emission ...
Self-amplified spontaneous emission (SASE) free-electron lasers (FELs) deliver ultrashort pulses wit...
The Fano absorption line shape of an autoionizing state encodes information on its internal atomic s...
The stochastic nature of the self-amplified spontaneous emission (SASE) process of free-electron las...
International audienceThe single-shot spatial characteristics of the vacuum ultraviolet self-amplifi...
A single-pass free-electron laser operating in the self-amplified spontaneous-emission (SASE) mode a...
For photon diagnostics at free-electron lasers (FELs), the determination of the photon pulse duratio...