X-ray generation by many charged particles experiencing accelerations similar to those in laser wakefield accelerator experiments, including the effects of the interaction of the laser pulse with trapped electrons, as well as betatron oscillations in an electron cavity, is directly evaluated. Semianalytic calculations of high energy photons are performed by solving classical spectral integrals for x rays produced by the combined action of a laser pulse and the fields of an electron cavity in an underdense plasma. Angularly resolved power spectra for electron bunches accelerated in the combined electromagnetic fields due to a Gaussian laser field and a paraboloid potential due to an electron cavity are calculated using a semianalytic numeric...
The features of Betatron x-ray emission produced in a laser-plasma accelerator are closely linked to...
An intense laser pulse in a plasma can accelerate electrons to GeV energies in centimetres. Transver...
The paper concerns with the dynamics and the emitted radiation of electrons undergoing betatron osci...
Energetic electron beams accelerated in a laser-produced plasma wakefield cavity can generate collim...
The temporal profile of X-ray betatron radiation was theoretically studied for the parameters availa...
The laser-plasma wakefield accelerator is a novel ultra-compact particle accelerator. A very intense...
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...
Betatron X-ray radiation in laser-plasma accelerators is produced when electrons are accelerated and...
In the framework of this thesis, a new methodology has been introduced to study the properties of ra...
International audienceIn relativistic laser plasma interaction, electrons can be simultaneously acce...
We propose a new idea to enhance and control the betatron radiation by using a modulating laser puls...
In laser-wakefield acceleration (LWFA), a femtosecond laser pulse is tightly focused in a gas to int...
We investigate a new regime for betatron x-ray emission that utilizes kilojoule-class picosecond las...
The features of Betatron x-ray emission produced in a laser-plasma accelerator are closely linked to...
An intense laser pulse in a plasma can accelerate electrons to GeV energies in centimetres. Transver...
The paper concerns with the dynamics and the emitted radiation of electrons undergoing betatron osci...
Energetic electron beams accelerated in a laser-produced plasma wakefield cavity can generate collim...
The temporal profile of X-ray betatron radiation was theoretically studied for the parameters availa...
The laser-plasma wakefield accelerator is a novel ultra-compact particle accelerator. A very intense...
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...
Betatron X-ray radiation in laser-plasma accelerators is produced when electrons are accelerated and...
In the framework of this thesis, a new methodology has been introduced to study the properties of ra...
International audienceIn relativistic laser plasma interaction, electrons can be simultaneously acce...
We propose a new idea to enhance and control the betatron radiation by using a modulating laser puls...
In laser-wakefield acceleration (LWFA), a femtosecond laser pulse is tightly focused in a gas to int...
We investigate a new regime for betatron x-ray emission that utilizes kilojoule-class picosecond las...
The features of Betatron x-ray emission produced in a laser-plasma accelerator are closely linked to...
An intense laser pulse in a plasma can accelerate electrons to GeV energies in centimetres. Transver...
The paper concerns with the dynamics and the emitted radiation of electrons undergoing betatron osci...