Positron acceleration in plasma wakefield faces significant challenges, as the positron beam must be pre-generated and precisely coupled into the wakefield and, most critically, suffers from defocusing issues. Here we propose a scheme that utilizes laser-driven electrons to produce, inject, and accelerate positrons in a single setup. The high-charge electron beam from wakefield acceleration creates copious electron–positron pairs via the Bethe–Heitler process, followed by enormous coherent transition radiation due to the electrons’ exiting from the metallic foil. Simulation results show that the coherent transition radiation field reaches up to tens of GV m−1, which captures and accelerates the positrons to cut-off energy of 1.5 GeV with en...
Positrons with high energy and short pulse duration generated by the ultra-short and ultra-intense l...
International audienceAccelerating particles to high energies in plasma wakefields is considered to ...
Plasma waves generated in the wake of intense, relativistic laser or particle beams can accelerate e...
International audiencePlasma wakefield accelerators have been used to accelerate electron and positr...
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...
In this paper we discuss a compact, laser-plasma-based scheme for the generation of positron beams s...
Laser based positron represents a new particle source with short pulse duration and high charge dens...
International audiencePlasma acceleration has emerged as a promising technology for future particle ...
Owing to their large accelerating gradients, plasma-based accelerators have attracted considerable i...
This introductory article is a synopsis of the status and prospects of particle-beam-driven plasma w...
The transport and acceleration of positron beams is a crucial challengeon the path towards plasma-ba...
Plasma waves generated in the wake of intense, relativistic laser1,2 or particle beams3,4 can accele...
International audienceIn laser-plasma-based accelerators, an intense laser pulse drives a large elec...
Positrons with high energy and short pulse duration generated by the ultra-short and ultra-intense l...
International audienceAccelerating particles to high energies in plasma wakefields is considered to ...
Plasma waves generated in the wake of intense, relativistic laser or particle beams can accelerate e...
International audiencePlasma wakefield accelerators have been used to accelerate electron and positr...
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...
In this paper we discuss a compact, laser-plasma-based scheme for the generation of positron beams s...
Laser based positron represents a new particle source with short pulse duration and high charge dens...
International audiencePlasma acceleration has emerged as a promising technology for future particle ...
Owing to their large accelerating gradients, plasma-based accelerators have attracted considerable i...
This introductory article is a synopsis of the status and prospects of particle-beam-driven plasma w...
The transport and acceleration of positron beams is a crucial challengeon the path towards plasma-ba...
Plasma waves generated in the wake of intense, relativistic laser1,2 or particle beams3,4 can accele...
International audienceIn laser-plasma-based accelerators, an intense laser pulse drives a large elec...
Positrons with high energy and short pulse duration generated by the ultra-short and ultra-intense l...
International audienceAccelerating particles to high energies in plasma wakefields is considered to ...
Plasma waves generated in the wake of intense, relativistic laser or particle beams can accelerate e...