In this paper we discuss a compact, laser-plasma-based scheme for the generation of positron beams suitable to be implemented in an all-optical setup. A laser-plasma-accelerated electron beam hits a solid target producing electron-positron pairs via bremsstrahlung. The back of the target serves as a plasma mirror to in-couple a laser pulse into a plasma stage located right after the mirror where the laser drives a plasma wave (or wakefield). By properly choosing the delay between the laser and the electron beam the positrons produced in the target can be trapped in the wakefield, where they are focused and accelerated during the transport, resulting in a collimated beam. This approach minimizes the ballistic propagation time and enhances th...
International audiencePlasma wakefield accelerators have been used to accelerate electron and positr...
We report on recent experimental results concerning the generation of collimated (divergence of the ...
We report on the first spatial and spectral characterisation of near-GeV positron beams generated in...
Owing to their large accelerating gradients, plasma-based accelerators have attracted considerable i...
Positron acceleration in plasma wakefield faces significant challenges, as the positron beam must be...
The intrinsic constraints in the amplitude of the accelerating fields sustainable by radio-frequency...
A new approach for positron acceleration in non-linear plasma wakefields driven by electron beams is...
An all-optical centimeter-scale laser-plasma positron accelerator is modeled to produce quasimonoene...
Laser based positron represents a new particle source with short pulse duration and high charge dens...
Positrons with high energy and short pulse duration generated by the ultra-short and ultra-intense l...
The generation of high-quality relativistic positron beams is a central area of research in experime...
Generation of electron-positron pairs via the multiphoton Breit-Wheeler process in an all-optical sc...
Laser plasma accelerators (LPAs) have shown promise as the next generation of compact particle accel...
An improved indirect scheme for laser positron generation is proposed. The positron yields in high-Z...
Although several laser–plasma-based methods have been proposed for generating energetic electrons, p...
International audiencePlasma wakefield accelerators have been used to accelerate electron and positr...
We report on recent experimental results concerning the generation of collimated (divergence of the ...
We report on the first spatial and spectral characterisation of near-GeV positron beams generated in...
Owing to their large accelerating gradients, plasma-based accelerators have attracted considerable i...
Positron acceleration in plasma wakefield faces significant challenges, as the positron beam must be...
The intrinsic constraints in the amplitude of the accelerating fields sustainable by radio-frequency...
A new approach for positron acceleration in non-linear plasma wakefields driven by electron beams is...
An all-optical centimeter-scale laser-plasma positron accelerator is modeled to produce quasimonoene...
Laser based positron represents a new particle source with short pulse duration and high charge dens...
Positrons with high energy and short pulse duration generated by the ultra-short and ultra-intense l...
The generation of high-quality relativistic positron beams is a central area of research in experime...
Generation of electron-positron pairs via the multiphoton Breit-Wheeler process in an all-optical sc...
Laser plasma accelerators (LPAs) have shown promise as the next generation of compact particle accel...
An improved indirect scheme for laser positron generation is proposed. The positron yields in high-Z...
Although several laser–plasma-based methods have been proposed for generating energetic electrons, p...
International audiencePlasma wakefield accelerators have been used to accelerate electron and positr...
We report on recent experimental results concerning the generation of collimated (divergence of the ...
We report on the first spatial and spectral characterisation of near-GeV positron beams generated in...