Laser-wakefield accelerators (LWFAs) were proposed more than three decades ago, and while they promise to deliver compact, high energy particle accelerators, they will also provide the scientific community with novel light sources. In a LWFA, where an intense laser pulse focused onto a plasma forms an electromagnetic wave in its wake, electrons can be trapped and are now routinely accelerated to GeV energies. From terahertz radiation to gamma-rays, this article reviews light sources from relativistic electrons produced by LWFAs, and discusses their potential applications. Betatron motion, Compton scattering and undulators respectively produce x-rays or gamma-rays by oscillating relativistic electrons in the wakefield behind the laser pulse,...
This thesis investigates the use of high-power lasers for synchrotron radiation sources with high br...
Recent progress in laser-driven plasma acceleration now enables the acceleration of electrons to sev...
High-intensity X-ray sources are invaluable tools, enabling experiments at the forefront of our unde...
This thesis was previously held under moratorium from 24th July 2012 until 24th July 2014.Laser-plas...
Laser-plasma wakefield acceleration (LWFA) is a promising technology that is attracting the attentio...
This thesis will detail experimental research in to laser wakefield acceleration (LWFA), with a part...
In laser-wakefield acceleration (LWFA), a femtosecond laser pulse is tightly focused in a gas to int...
The laser-plasma wakefield accelerator is a novel ultra-compact particle accelerator. A very intense...
Laser wakefield accelerators (LWFAs) operate through a high intensity ultra short laser pulse exciti...
In this article we review the prospects of laser wakefield accelerators as next generation light sou...
International audienceIn this article we review the prospects of laser wakefield accelerators as nex...
Here we explore ways of transforming laser radiation into incoherent and coherent electromagnetic ra...
Advances in laser-plasma wake field accelerators (LWFA) have now reached the point where they can be...
In laser-wakefield acceleration (LWFA), a femtosecond laser pulse is tightly focused in a gas to int...
Since the demonstration of a chirped-pulse amplification laser was first made in 1985, the amount of...
This thesis investigates the use of high-power lasers for synchrotron radiation sources with high br...
Recent progress in laser-driven plasma acceleration now enables the acceleration of electrons to sev...
High-intensity X-ray sources are invaluable tools, enabling experiments at the forefront of our unde...
This thesis was previously held under moratorium from 24th July 2012 until 24th July 2014.Laser-plas...
Laser-plasma wakefield acceleration (LWFA) is a promising technology that is attracting the attentio...
This thesis will detail experimental research in to laser wakefield acceleration (LWFA), with a part...
In laser-wakefield acceleration (LWFA), a femtosecond laser pulse is tightly focused in a gas to int...
The laser-plasma wakefield accelerator is a novel ultra-compact particle accelerator. A very intense...
Laser wakefield accelerators (LWFAs) operate through a high intensity ultra short laser pulse exciti...
In this article we review the prospects of laser wakefield accelerators as next generation light sou...
International audienceIn this article we review the prospects of laser wakefield accelerators as nex...
Here we explore ways of transforming laser radiation into incoherent and coherent electromagnetic ra...
Advances in laser-plasma wake field accelerators (LWFA) have now reached the point where they can be...
In laser-wakefield acceleration (LWFA), a femtosecond laser pulse is tightly focused in a gas to int...
Since the demonstration of a chirped-pulse amplification laser was first made in 1985, the amount of...
This thesis investigates the use of high-power lasers for synchrotron radiation sources with high br...
Recent progress in laser-driven plasma acceleration now enables the acceleration of electrons to sev...
High-intensity X-ray sources are invaluable tools, enabling experiments at the forefront of our unde...