Plasma waves generated in the wake of intense, relativistic laser1,2 or particle beams3,4 can accelerate electron bunches to gigaelectronvolt energies in centimetre-scale distances. This allows the realization of compact accelerators with emerging applications ranging from modern light sources such as the free-electron laser to energy frontier lepton colliders. In a plasma wakefield accelerator, such multi-gigavolt-per-metre wakefields can accelerate witness electron bunches that are either externally injected5,6 or captured from the background plasma7,8. Here we demonstrate optically triggered injection9,10,11 and acceleration of electron bunches, generated in a multi-component hydrogen and helium plasma employing a spatially aligned and s...
A novel laser-plasma-based source of relativistic electrons is described. It involves a combination ...
A novel laser-plasma-based source of relativistic electrons is described. It involves a combination ...
A novel laser-plasma-based source of relativistic electrons is described. It involves a combination ...
Plasma waves generated in the wake of intense, relativistic laser or particle beams can accelerate e...
Plasma waves generated in the wake of intense, relativistic laser1,2 or particle beams3,4 can accele...
Plasma waves generated in the wake of intense, relativistic laser or particle beams can accelerate e...
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...
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...
Electron beams to be accelerated in beam-driven plasma wakes are commonly formed by a photocathode a...
Electron beams to be accelerated in beam-driven plasma wakes are commonly formed by a photocathode a...
Electron beams to be accelerated in beam-driven plasma wakes are commonly formed by a photocathode a...
Beam-driven plasma wakefield acceleration using low-ionization-threshold gas such as Li is combined ...
A novel laser-plasma-based source of relativistic electrons is described. It involves a combination ...
A novel laser-plasma-based source of relativistic electrons is described. It involves a combination ...
A novel laser-plasma-based source of relativistic electrons is described. It involves a combination ...
Plasma waves generated in the wake of intense, relativistic laser or particle beams can accelerate e...
Plasma waves generated in the wake of intense, relativistic laser1,2 or particle beams3,4 can accele...
Plasma waves generated in the wake of intense, relativistic laser or particle beams can accelerate e...
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...
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...
Electron beams to be accelerated in beam-driven plasma wakes are commonly formed by a photocathode a...
Electron beams to be accelerated in beam-driven plasma wakes are commonly formed by a photocathode a...
Electron beams to be accelerated in beam-driven plasma wakes are commonly formed by a photocathode a...
Beam-driven plasma wakefield acceleration using low-ionization-threshold gas such as Li is combined ...
A novel laser-plasma-based source of relativistic electrons is described. It involves a combination ...
A novel laser-plasma-based source of relativistic electrons is described. It involves a combination ...
A novel laser-plasma-based source of relativistic electrons is described. It involves a combination ...