In this article we review the prospects of laser wakefield accelerators as next generation light sources for applications. This work arose as a result of discussions held at the 2013 Laser Plasma Accelerators Workshop. X-ray phase contrast imaging, x-ray absorption spectroscopy, and nuclear resonance fluorescence are highlighted as potential applications for laser-plasma based light sources. We discuss ongoing and future efforts to improve the properties of radiation from plasma betatron emission and Compton scattering using laser wakefield accelerators for these specific applications
International audienceHigh intensity femtosecond laser pulses can be used to generate X-ray radiatio...
Laser-plasma wakefield acceleration (LWFA) is a promising technology that is attracting the attentio...
Since the demonstration of a chirped-pulse amplification laser was first made in 1985, the amount of...
International audienceIn this article we review the prospects of laser wakefield accelerators as nex...
In this article we review the prospects of laser wakefield accelerators as next generation light sou...
We report on the generation of bright multi-keV betatron X-ray radiation using a GeV laser wakefield...
In laser-wakefield acceleration (LWFA), a femtosecond laser pulse is tightly focused in a gas to int...
Laser-wakefield accelerators (LWFAs) were proposed more than three decades ago, and while they promi...
In laser-wakefield acceleration (LWFA), a femtosecond laser pulse is tightly focused in a gas to int...
Both the laser-plasma wakefield accelerator (LWFA) and X-ray phase-contrast imaging (XPCi) are promi...
Advances in laser-plasma wake field accelerators (LWFA) have now reached the point where they can be...
International audienceHigh intensity femtosecond laser pulses can be used to generate X-ray radiatio...
Laser-plasma wakefield acceleration (LWFA) is a promising technology that is attracting the attentio...
Since the demonstration of a chirped-pulse amplification laser was first made in 1985, the amount of...
International audienceIn this article we review the prospects of laser wakefield accelerators as nex...
In this article we review the prospects of laser wakefield accelerators as next generation light sou...
We report on the generation of bright multi-keV betatron X-ray radiation using a GeV laser wakefield...
In laser-wakefield acceleration (LWFA), a femtosecond laser pulse is tightly focused in a gas to int...
Laser-wakefield accelerators (LWFAs) were proposed more than three decades ago, and while they promi...
In laser-wakefield acceleration (LWFA), a femtosecond laser pulse is tightly focused in a gas to int...
Both the laser-plasma wakefield accelerator (LWFA) and X-ray phase-contrast imaging (XPCi) are promi...
Advances in laser-plasma wake field accelerators (LWFA) have now reached the point where they can be...
International audienceHigh intensity femtosecond laser pulses can be used to generate X-ray radiatio...
Laser-plasma wakefield acceleration (LWFA) is a promising technology that is attracting the attentio...
Since the demonstration of a chirped-pulse amplification laser was first made in 1985, the amount of...