The laser-plasma wakefield accelerator is a novel ultra-compact particle accelerator. A very intense laser pulse focused onto plasma can excites plasma density waves. Electrons surfing these waves can be accelerated to very high energies with unprecedented accelerating gradients in excess of 1 GV/cm. While accelerating, electrons undergo transverse betatron oscillations and emit synchrotron-like x-ray radiation into a narrow on-axis cone, which is enhanced when electrons interact with the electromagnetic field of the laser. In this case, the laser can resonantly drive the electron motion, lading to direct laser acceleration. This occurs when the betatron frequency matches the Doppler down-shifted frequency of the laser. As a consequence, th...
International audienceHigh intensity femtosecond laser pulses can be used to generate X-ray radiatio...
Advances in laser-plasma wake field accelerators (LWFA) have now reached the point where they can be...
Betatron radiation from laser wakefield accelerated electrons and X-rays scattered off a counter-pro...
The laser-plasma wakefield accelerator is a novel ultra-compact particle accelerator. A very intense...
The laser-plasma wakefield accelerator is a novel ultra-compact particle accelerator. A very intense...
An intense laser pulse in a plasma can accelerate electrons1, 2, 3, 4 to GeV energies in centimetres...
This thesis was previously held under moratorium from 24th July 2012 until 24th July 2014.Laser-plas...
X-ray generation by many charged particles experiencing accelerations similar to those in laser wake...
Energetic electron beams accelerated in a laser-produced plasma wakefield cavity can generate collim...
We investigate a new regime for betatron x-ray emission that utilizes kilojoule-class picosecond las...
We propose a new idea to enhance and control the betatron radiation by using a modulating laser puls...
In laser wakefield accelerators, electron motion is driven by intense forces that depend on the plas...
International audienceHigh intensity femtosecond laser pulses can be used to generate X-ray radiatio...
Advances in laser-plasma wake field accelerators (LWFA) have now reached the point where they can be...
Betatron radiation from laser wakefield accelerated electrons and X-rays scattered off a counter-pro...
The laser-plasma wakefield accelerator is a novel ultra-compact particle accelerator. A very intense...
The laser-plasma wakefield accelerator is a novel ultra-compact particle accelerator. A very intense...
An intense laser pulse in a plasma can accelerate electrons1, 2, 3, 4 to GeV energies in centimetres...
This thesis was previously held under moratorium from 24th July 2012 until 24th July 2014.Laser-plas...
X-ray generation by many charged particles experiencing accelerations similar to those in laser wake...
Energetic electron beams accelerated in a laser-produced plasma wakefield cavity can generate collim...
We investigate a new regime for betatron x-ray emission that utilizes kilojoule-class picosecond las...
We propose a new idea to enhance and control the betatron radiation by using a modulating laser puls...
In laser wakefield accelerators, electron motion is driven by intense forces that depend on the plas...
International audienceHigh intensity femtosecond laser pulses can be used to generate X-ray radiatio...
Advances in laser-plasma wake field accelerators (LWFA) have now reached the point where they can be...
Betatron radiation from laser wakefield accelerated electrons and X-rays scattered off a counter-pro...