Harmonic seeding of free electron lasers has attracted significant attention as a method for producing transform-limited pulses in the soft x-ray region. Harmonic multiplication schemes extend seeding to shorter wavelengths, but also amplify the spectral phase errors of the initial seed laser, and may degrade the pulse quality and impede production of transform-limited pulses. In this paper we consider the effect of seed laser phase errors in high gain harmonic generation and echo-enabled harmonic generation. We use simulations to confirm analytical results for the case of linearly chirped seed lasers, and extend the results for arbitrary seed laser envelope and phase
International audienceWe present a bright and coherent soft x-ray source based on high harmonic gene...
In recent years, there is interest of the Free-Electron Laser (FEL) community in external-seeding te...
We report the first experimental demonstration of the echo-enabled harmonic generation (EEHG) techni...
Harmonic seeding of free electron lasers has attracted significant attention from the promise of tra...
Theoretical studies of high-gain harmonic generation (HGHG) and echo-enabled harmonic generation (EE...
Echo-enabled harmonic generation free electron lasers hold great promise for the generation of fully...
Coherent x-ray production by a seeded free electron laser (FEL) is important for next generation syn...
With the advent of X-ray Free Electron Lasers (FELs), new methods have been developed to extend capa...
We report the first experimental demonstration of the echo-enabled harmonic generation technique, wh...
The longitudinal coherence of free-electron laser (FEL) radiation can be enhanced by seeding the FEL...
In this paper, we systematically study the echo-enabled harmonic generation (EEHG) free electron las...
The generation of highly coherent radiation in a high repetition rate free electron laser driven by ...
Using High Harmonics (HH) as a seed for free electron lasers is currently under consideration in a n...
X-ray free-electron lasers are enabling access to new science by producing ultrafast and intense x r...
We examine the characteristics of high-order harmonics generated with 800 nm, 25 mJ, 160 fs laser pu...
International audienceWe present a bright and coherent soft x-ray source based on high harmonic gene...
In recent years, there is interest of the Free-Electron Laser (FEL) community in external-seeding te...
We report the first experimental demonstration of the echo-enabled harmonic generation (EEHG) techni...
Harmonic seeding of free electron lasers has attracted significant attention from the promise of tra...
Theoretical studies of high-gain harmonic generation (HGHG) and echo-enabled harmonic generation (EE...
Echo-enabled harmonic generation free electron lasers hold great promise for the generation of fully...
Coherent x-ray production by a seeded free electron laser (FEL) is important for next generation syn...
With the advent of X-ray Free Electron Lasers (FELs), new methods have been developed to extend capa...
We report the first experimental demonstration of the echo-enabled harmonic generation technique, wh...
The longitudinal coherence of free-electron laser (FEL) radiation can be enhanced by seeding the FEL...
In this paper, we systematically study the echo-enabled harmonic generation (EEHG) free electron las...
The generation of highly coherent radiation in a high repetition rate free electron laser driven by ...
Using High Harmonics (HH) as a seed for free electron lasers is currently under consideration in a n...
X-ray free-electron lasers are enabling access to new science by producing ultrafast and intense x r...
We examine the characteristics of high-order harmonics generated with 800 nm, 25 mJ, 160 fs laser pu...
International audienceWe present a bright and coherent soft x-ray source based on high harmonic gene...
In recent years, there is interest of the Free-Electron Laser (FEL) community in external-seeding te...
We report the first experimental demonstration of the echo-enabled harmonic generation (EEHG) techni...