The generation of quasimonoenergetic electron beams, with energies up to 200 MeV, by a laser-plasma accelerator driven in a hydrogen-filled capillary discharge waveguide is investigated. Injection and acceleration of electrons is found to depend sensitively on the delay between the onset of the discharge current and the arrival of the laser pulse. A comparison of spectroscopic and interferometric measurements suggests that injection is assisted by laser ionization of atoms or ions within the channel
Abstract Results are presented on the generation of quasimonoenergetic electron beams with energy up...
Plasma based accelerators are capable of producing electron sources which are ultra-compact (a few m...
High quality electron beams (several 109 electrons above 80 MeV energy with percent energy spread an...
The generation of quasimonoenergetic electron beams, with energies up to 200 MeV, by a laser-plasma ...
The generation of quasimonoenergetic electron beams, with energies greater than 500 MeV, in a laser-...
We report experimental results on laser-driven electron acceleration with low divergence. The electr...
The generation of GeV-scale electron beams in the plasma channel formed in a gas-filled capillary di...
The generation of GeV-scale electron beams in a gas-filled capillary discharge waveguide with good r...
During the last few years laser-driven plasma accelerators have been shown to generate quasi-monoene...
During the last few years laser-driven plasma accelerators have been shown to generate quasi-monoene...
This thesis describes a detailed investigation into the process of laser-wakefield acceleration (LWF...
A plasma channel created by the combination of a capillary discharge and inverse Bremsstrahlung lase...
The role played by self-focusing of a high-intensity femtosecond laser in the entrance plume of a ga...
Abstract Results are presented on the generation of quasimonoenergetic electron beams with energy up...
Plasma based accelerators are capable of producing electron sources which are ultra-compact (a few m...
High quality electron beams (several 109 electrons above 80 MeV energy with percent energy spread an...
The generation of quasimonoenergetic electron beams, with energies up to 200 MeV, by a laser-plasma ...
The generation of quasimonoenergetic electron beams, with energies greater than 500 MeV, in a laser-...
We report experimental results on laser-driven electron acceleration with low divergence. The electr...
The generation of GeV-scale electron beams in the plasma channel formed in a gas-filled capillary di...
The generation of GeV-scale electron beams in a gas-filled capillary discharge waveguide with good r...
During the last few years laser-driven plasma accelerators have been shown to generate quasi-monoene...
During the last few years laser-driven plasma accelerators have been shown to generate quasi-monoene...
This thesis describes a detailed investigation into the process of laser-wakefield acceleration (LWF...
A plasma channel created by the combination of a capillary discharge and inverse Bremsstrahlung lase...
The role played by self-focusing of a high-intensity femtosecond laser in the entrance plume of a ga...
Abstract Results are presented on the generation of quasimonoenergetic electron beams with energy up...
Plasma based accelerators are capable of producing electron sources which are ultra-compact (a few m...
High quality electron beams (several 109 electrons above 80 MeV energy with percent energy spread an...