We show the first experiment of a transverse laser interference for electron injection into the laser plasma accelerators. Simulations show such an injection is different from previous methods, as electrons are trapped into later acceleration buckets other than the leading ones. With optimal plasma tapering, the dephasing limit of such unprecedented electron beams could be potentially increased by an order of magnitude. In simulations, the interference drives a relativistic plasma grating, which triggers the splitting of relativistic-intensity laser pulses and wakefield. Consequently, spatially dual electron beams are accelerated, as also confirmed by the experiment
An electron injector concept for laser-plasma accelerator was developed in ref [1] and [2] ; it reli...
We discuss considerations regarding a novel and robust scheme for optically triggered electron bunch...
AbstractTo improve the stability and reproducibility of laser wakefield accelerators and to allow fo...
International audienceWe show the first experiment of a transverse laser interference for electron i...
A novel laser-plasma-based source of relativistic electrons is described. It involves a combination ...
International audienceLaser-wakefield acceleration constitutes a promising technology for future ele...
Interactions of large-amplitude relativistic plasma waves were investigated experimentally by propag...
The authors seek to review injection concepts for plasma based acceleration. It is shown that regard...
All-optical controlled injection and acceleration of electrons in a laser wakefield has recently bee...
The authors seek to review injection concepts for plasma based acceleration. It is shown that regard...
Laser driven plasma waves have up to now been considered exclusively as second stage accelerators. C...
A laser-plasma-based source of relativistic electrons is described in detail, and analyzed in two di...
The process of high energy electron acceleration along the surface of grating targets (GTs) that wer...
We discuss the first experimental demonstration of electron acceleration by a laser wakefield over d...
An electron injector concept for laser-plasma accelerator was developed in ref [1] and [2] ; it reli...
We discuss considerations regarding a novel and robust scheme for optically triggered electron bunch...
AbstractTo improve the stability and reproducibility of laser wakefield accelerators and to allow fo...
International audienceWe show the first experiment of a transverse laser interference for electron i...
A novel laser-plasma-based source of relativistic electrons is described. It involves a combination ...
International audienceLaser-wakefield acceleration constitutes a promising technology for future ele...
Interactions of large-amplitude relativistic plasma waves were investigated experimentally by propag...
The authors seek to review injection concepts for plasma based acceleration. It is shown that regard...
All-optical controlled injection and acceleration of electrons in a laser wakefield has recently bee...
The authors seek to review injection concepts for plasma based acceleration. It is shown that regard...
Laser driven plasma waves have up to now been considered exclusively as second stage accelerators. C...
A laser-plasma-based source of relativistic electrons is described in detail, and analyzed in two di...
The process of high energy electron acceleration along the surface of grating targets (GTs) that wer...
We discuss the first experimental demonstration of electron acceleration by a laser wakefield over d...
An electron injector concept for laser-plasma accelerator was developed in ref [1] and [2] ; it reli...
We discuss considerations regarding a novel and robust scheme for optically triggered electron bunch...
AbstractTo improve the stability and reproducibility of laser wakefield accelerators and to allow fo...