We introduce the theoretical framework of laser wakefield acceleration and plasma wiggler radiation generation in the matched regime, give scaling laws and apply the scheme to laser systems planned for the near future. We compare the anticipated electron and x-ray beam parameters for a 100 TW, 1 PW and 10 PW short pulse Ti:Sapphire laser with previous experimental results. Depending on the chosen laser configuration, x-rays from a plasma wiggler beamline (PWB) can be several orders of magnitude brighter than current betatron sources, and comparable to or better than 3rd generation synchrotron facilities. Furthermore, increasing the laser power from 0.1 to 10 PW, the spectral peak of the betatron radiation shifts into the hard x-ray and gamm...
International audienceIn this article we review the prospects of laser wakefield accelerators as nex...
This thesis was previously held under moratorium from 24th July 2012 until 24th July 2014.Laser-plas...
Laser-driven plasma accelerators can generate accelerating gradients three orders of magnitude large...
In this thesis, several plasma wakefield-based flexible undulator/wiggler schemes have been develope...
Advances in laser-plasma wake field accelerators (LWFA) have now reached the point where they can be...
International audienceLaser plasma acceleration of electrons has progressed along with advances in l...
International audienceEnergetic electron beams accelerated in a laser-produced plasma wakefield cavi...
The Advanced Laser-Plasma High-Energy Accelerators towards X-rays (ALPHA-X) programme is developing ...
Laser-wakefield acceleration (LWFA) is a promising, emerging technology for future accelerator-based...
This thesis investigates the use of high-power lasers for synchrotron radiation sources with high br...
Abstract. A new method for generating positrons has been proposed that uses betatron X-rays emitted ...
We present an analysis of the performance of a broadband secondary radiation source based on a high-...
We report on the characterisation of an x-ray source, generated by a laser-driven plasma wakefield a...
International audienceIn this article we review the prospects of laser wakefield accelerators as nex...
This thesis was previously held under moratorium from 24th July 2012 until 24th July 2014.Laser-plas...
Laser-driven plasma accelerators can generate accelerating gradients three orders of magnitude large...
In this thesis, several plasma wakefield-based flexible undulator/wiggler schemes have been develope...
Advances in laser-plasma wake field accelerators (LWFA) have now reached the point where they can be...
International audienceLaser plasma acceleration of electrons has progressed along with advances in l...
International audienceEnergetic electron beams accelerated in a laser-produced plasma wakefield cavi...
The Advanced Laser-Plasma High-Energy Accelerators towards X-rays (ALPHA-X) programme is developing ...
Laser-wakefield acceleration (LWFA) is a promising, emerging technology for future accelerator-based...
This thesis investigates the use of high-power lasers for synchrotron radiation sources with high br...
Abstract. A new method for generating positrons has been proposed that uses betatron X-rays emitted ...
We present an analysis of the performance of a broadband secondary radiation source based on a high-...
We report on the characterisation of an x-ray source, generated by a laser-driven plasma wakefield a...
International audienceIn this article we review the prospects of laser wakefield accelerators as nex...
This thesis was previously held under moratorium from 24th July 2012 until 24th July 2014.Laser-plas...
Laser-driven plasma accelerators can generate accelerating gradients three orders of magnitude large...