International audienceEnergetic electron beams accelerated in a laser-produced plasma wakefield cavity can generate collimated beams of X-ray radiation. The oscillation of the electrons in the plasma cavity produces synchrotron-like emission, called betatron radiation. On the basis of state of the art experiments, we discuss the potentiality of this source in terms of spectral brigthness and flux. These characteristics are compared to existing and planned X-ray sources in both laser and accelerator communities
We investigate a new regime for betatron x-ray emission that utilizes kilojoule-class picosecond las...
We report on the characterisation of an x-ray source, generated by a laser-driven plasma wakefield a...
International audienceBetatron x-ray sources from laser-plasma accelerators reproduce the principle ...
International audienceEnergetic electron beams accelerated in a laser-produced plasma wakefield cavi...
Betatron X-ray radiation in laser-plasma accelerators is produced when electrons are accelerated and...
Synchrotron x-ray radiation from laser wakefield accelerated electron beams was characterized at the...
X-ray generation by many charged particles experiencing accelerations similar to those in laser wake...
International audienceRelativistic electrons accelerated by laser wakefields can produce x-ray beams...
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...
International audienceHigh intensity femtosecond laser pulses can be used to generate X-ray radiatio...
The features of Betatron x-ray emission produced in a laser-plasma accelerator are closely linked to...
We present an analysis of the performance of a broadband secondary radiation source based on a high-...
Betatron radiation from laser wakefield accelerated electrons and X-rays scattered off a counter-pro...
We investigate a new regime for betatron x-ray emission that utilizes kilojoule-class picosecond las...
We report on the characterisation of an x-ray source, generated by a laser-driven plasma wakefield a...
International audienceBetatron x-ray sources from laser-plasma accelerators reproduce the principle ...
International audienceEnergetic electron beams accelerated in a laser-produced plasma wakefield cavi...
Betatron X-ray radiation in laser-plasma accelerators is produced when electrons are accelerated and...
Synchrotron x-ray radiation from laser wakefield accelerated electron beams was characterized at the...
X-ray generation by many charged particles experiencing accelerations similar to those in laser wake...
International audienceRelativistic electrons accelerated by laser wakefields can produce x-ray beams...
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...
International audienceHigh intensity femtosecond laser pulses can be used to generate X-ray radiatio...
The features of Betatron x-ray emission produced in a laser-plasma accelerator are closely linked to...
We present an analysis of the performance of a broadband secondary radiation source based on a high-...
Betatron radiation from laser wakefield accelerated electrons and X-rays scattered off a counter-pro...
We investigate a new regime for betatron x-ray emission that utilizes kilojoule-class picosecond las...
We report on the characterisation of an x-ray source, generated by a laser-driven plasma wakefield a...
International audienceBetatron x-ray sources from laser-plasma accelerators reproduce the principle ...