A novel approach to implement and control electron injection into the accelerating phase of a laser wakefield accelerator is presented. It utilizes a wire, which is introduced into the flow of a supersonic gas jet creating shock waves and three regions of differing plasma electron density. If tailored appropriately, the laser plasma interaction takes place in three stages: Laser self-compression, electron injection, and acceleration in the second plasma wave period. Compared to self-injection by wave breaking of a nonlinear plasma wave in a constant density plasma, this scheme increases beam charge by up to 1 order of magnitude in the quasimonoenergetic regime. Electron acceleration in the second plasma wave period reduces electron beam div...
International audienceIn laser-plasma-based accelerators, an intense laser pulse drives a large elec...
International audienceIn laser-plasma-based accelerators, an intense laser pulse drives a large elec...
International audienceIn laser-plasma-based accelerators, an intense laser pulse drives a large elec...
A novel approach to implement and control electron injection into the accelerating phase of a laser ...
A novel approach to implement and control electron injection into the accelerating phase of a laser ...
A novel approach to implement and control electron injection into the accelerating phase of a laser ...
A novel approach to implement and control electron injection into the accelerating phase of a laser ...
We demonstrate a sharp density transition for electron injection in laser wakefield acceleration thr...
We demonstrate a laser wakefield accelerator with a novel electron injection scheme resulting in enh...
International audienceThe injection of quasimonoenergetic electron beams into a laser wakefield acce...
International audienceThe injection of quasimonoenergetic electron beams into a laser wakefield acce...
International audienceThe injection of quasimonoenergetic electron beams into a laser wakefield acce...
We report on a study on controlled injection of electrons into the accelerating phase of a plasma wa...
We report on a study on controlled injection of electrons into the accelerating phase of a plasma wa...
The generation of quasimonoenergetic electron beams, with energies greater than 500 MeV, in a laser-...
International audienceIn laser-plasma-based accelerators, an intense laser pulse drives a large elec...
International audienceIn laser-plasma-based accelerators, an intense laser pulse drives a large elec...
International audienceIn laser-plasma-based accelerators, an intense laser pulse drives a large elec...
A novel approach to implement and control electron injection into the accelerating phase of a laser ...
A novel approach to implement and control electron injection into the accelerating phase of a laser ...
A novel approach to implement and control electron injection into the accelerating phase of a laser ...
A novel approach to implement and control electron injection into the accelerating phase of a laser ...
We demonstrate a sharp density transition for electron injection in laser wakefield acceleration thr...
We demonstrate a laser wakefield accelerator with a novel electron injection scheme resulting in enh...
International audienceThe injection of quasimonoenergetic electron beams into a laser wakefield acce...
International audienceThe injection of quasimonoenergetic electron beams into a laser wakefield acce...
International audienceThe injection of quasimonoenergetic electron beams into a laser wakefield acce...
We report on a study on controlled injection of electrons into the accelerating phase of a plasma wa...
We report on a study on controlled injection of electrons into the accelerating phase of a plasma wa...
The generation of quasimonoenergetic electron beams, with energies greater than 500 MeV, in a laser-...
International audienceIn laser-plasma-based accelerators, an intense laser pulse drives a large elec...
International audienceIn laser-plasma-based accelerators, an intense laser pulse drives a large elec...
International audienceIn laser-plasma-based accelerators, an intense laser pulse drives a large elec...