International audienceX-ray free-electron lasers (FELs) are powerful tools for probing matter properties down to sub-nanometer scales with femtosecond time resolution, allowing a growing number of physical, chemical, biological and medical investigations to be carried out. FELs operating in seeding mode intrinsically present enhanced temporal coherence properties with respect to those relying on the self-amplified spontaneous emission (SASE) process. They are however limited, for the moment, to extreme ultraviolet (XUV) wavelengths, or in some cases to soft X-rays, and durations of tens of femtoseconds. We studied how these limits can be overcome by means of X-ray chirped pulse amplification, inspired by infrared lasers.As a matter of fact,...
Fine time-resolved analysis of matter - i.e. spectroscopy and photon scattering - in the linear resp...
Free-electron lasers (FELs) operating in the soft and hard x-ray wavelength range deliver unpreceden...
X-ray free-electron lasers (FELs), which amplify light emitted by a relativistic electron beam, are ...
International audienceX-ray free-electron lasers (FELs) are powerful tools for probing matter proper...
International audienceChirped pulse amplification in optical lasers is a revolutionary technique, wh...
In this work we combine elements of chirped pulse amplification techniques, now familiar in solid-st...
With the advent of X-ray Free Electron Lasers (FELs), new methods have been developed to extend capa...
International audienceWe demonstrate the ability to control and shape the spectrotemporal content of...
In this work we combine elements of chirped pulse amplification (CPA) techniques, now familiar in so...
A method for generating femtosecond duration X-ray pulses using a single-pass free-electron laser (F...
The underlying theory of a high gain free electron laser (FEL) has existed for two decades [1-2], bu...
AbstractThe aim of the workshop was to consider what developments might be achievable in the next ge...
Fine time-resolved analysis of matter - i.e. spectroscopy and photon scattering - in the linear resp...
Free-electron lasers (FELs) operating in the soft and hard x-ray wavelength range deliver unpreceden...
X-ray free-electron lasers (FELs), which amplify light emitted by a relativistic electron beam, are ...
International audienceX-ray free-electron lasers (FELs) are powerful tools for probing matter proper...
International audienceChirped pulse amplification in optical lasers is a revolutionary technique, wh...
In this work we combine elements of chirped pulse amplification techniques, now familiar in solid-st...
With the advent of X-ray Free Electron Lasers (FELs), new methods have been developed to extend capa...
International audienceWe demonstrate the ability to control and shape the spectrotemporal content of...
In this work we combine elements of chirped pulse amplification (CPA) techniques, now familiar in so...
A method for generating femtosecond duration X-ray pulses using a single-pass free-electron laser (F...
The underlying theory of a high gain free electron laser (FEL) has existed for two decades [1-2], bu...
AbstractThe aim of the workshop was to consider what developments might be achievable in the next ge...
Fine time-resolved analysis of matter - i.e. spectroscopy and photon scattering - in the linear resp...
Free-electron lasers (FELs) operating in the soft and hard x-ray wavelength range deliver unpreceden...
X-ray free-electron lasers (FELs), which amplify light emitted by a relativistic electron beam, are ...