Density transition (or shock-front) injection is a technique to obtain high quality electron beams in laser wakefield acceleration. This technique, which requires no additional laser pulse, is easy to implement and is receiving increasing interest. In addition to its performances, its setup realized with a blade inserted in a gas jet allows a certain flexibility in controlling the density transition shape, whose effects on the beam quality have been studied theoretically and experimentally. We report the results of particle-in-cell simulations where the laser energy is systematically varied for different shapes of the density transition. Our study shows how the laser energy affects the injection process, increasing the injected charge and i...
The effects of experimental variations in the synchronization, laser power, and plasma density on th...
Control of the properties of laser-plasma-accelerated electron beams that were injected along a shoc...
In this paper, the effects of scale length and transition density ratio on the electron trapping and...
International audienceDensity transition (or shock-front) injection is a technique to obtain high qu...
International audienceThe quality of laser wakefield accelerated electrons beams is strongly determi...
The quality of laser wakefield accelerated electrons beams is strongly determined by the physicalmec...
We demonstrate a laser wakefield accelerator with a novel electron injection scheme resulting in enh...
We demonstrate a sharp density transition for electron injection in laser wakefield acceleration thr...
The dynamics of electron acceleration driven by laser wakefield is studied in detail using the parti...
Density transition injection is an effective technique for controllably loading electrons into a tra...
Density transition injection is an effective technique for controllably loading electrons into a tra...
A novel approach to implement and control electron injection into the accelerating phase of a laser ...
Laser Wake Field Acceleration of relativistic electron bunches is a promising method to produce a la...
The effects of experimental variations in the synchronization, laser power, and plasma density on th...
Control of the properties of laser-plasma-accelerated electron beams that were injected along a shoc...
In this paper, the effects of scale length and transition density ratio on the electron trapping and...
International audienceDensity transition (or shock-front) injection is a technique to obtain high qu...
International audienceThe quality of laser wakefield accelerated electrons beams is strongly determi...
The quality of laser wakefield accelerated electrons beams is strongly determined by the physicalmec...
We demonstrate a laser wakefield accelerator with a novel electron injection scheme resulting in enh...
We demonstrate a sharp density transition for electron injection in laser wakefield acceleration thr...
The dynamics of electron acceleration driven by laser wakefield is studied in detail using the parti...
Density transition injection is an effective technique for controllably loading electrons into a tra...
Density transition injection is an effective technique for controllably loading electrons into a tra...
A novel approach to implement and control electron injection into the accelerating phase of a laser ...
Laser Wake Field Acceleration of relativistic electron bunches is a promising method to produce a la...
The effects of experimental variations in the synchronization, laser power, and plasma density on th...
Control of the properties of laser-plasma-accelerated electron beams that were injected along a shoc...
In this paper, the effects of scale length and transition density ratio on the electron trapping and...