International audienceOne of the key ingredients of laser-plasma accelerators is their injector, which defines how electrons are trapped into the laser-driven plasma wave. The stability and control of laser-plasma electron bunches strongly depends on this injection stage. Self-injection is a convenient way to achieve the electron trapping and is the most widely used injector. Here we demonstrate, by using a variable length gas cell, that injection can be achieved by either longitudinal or transverse self-injection, giving rise to very different electron beam features. The results are supported by 3 dimensional particle-in-cell simulations
A laser pulse traveling through a plasma can excite large amplitude plasma waves that can be used to...
A laser pulse traveling through a plasma can excite large amplitude plasma waves that can be used to...
The laser wakefield accelerator (LWFA) is a nascent electron acceleration technology characterised b...
International audienceOne of the key ingredients of laser-plasma accelerators is their injector, whi...
International audienceOne of the key ingredients of laser-plasma accelerators is their injector, whi...
International audienceOne of the key ingredients of laser-plasma accelerators is their injector, whi...
International audienceOne of the key ingredients of laser-plasma accelerators is their injector, whi...
Laser-plasma accelerators can produce high quality electron beams, up to giga-electronvolts in energ...
International audienceLaser-plasma accelerators can produce high quality electron beams, up to giga-...
International audienceLaser-plasma accelerators can produce high quality electron beams, up to giga-...
International audienceLaser-plasma accelerators can produce high quality electron beams, up to giga-...
International audienceLaser-plasma accelerators can produce high quality electron beams, up to giga-...
International audienceLaser-plasma accelerators can produce high quality electron beams, up to giga-...
A laser pulse traveling through a plasma can excite large amplitude plasma waves that can be used to...
A laser pulse traveling through a plasma can excite large amplitude plasma waves that can be used to...
A laser pulse traveling through a plasma can excite large amplitude plasma waves that can be used to...
A laser pulse traveling through a plasma can excite large amplitude plasma waves that can be used to...
The laser wakefield accelerator (LWFA) is a nascent electron acceleration technology characterised b...
International audienceOne of the key ingredients of laser-plasma accelerators is their injector, whi...
International audienceOne of the key ingredients of laser-plasma accelerators is their injector, whi...
International audienceOne of the key ingredients of laser-plasma accelerators is their injector, whi...
International audienceOne of the key ingredients of laser-plasma accelerators is their injector, whi...
Laser-plasma accelerators can produce high quality electron beams, up to giga-electronvolts in energ...
International audienceLaser-plasma accelerators can produce high quality electron beams, up to giga-...
International audienceLaser-plasma accelerators can produce high quality electron beams, up to giga-...
International audienceLaser-plasma accelerators can produce high quality electron beams, up to giga-...
International audienceLaser-plasma accelerators can produce high quality electron beams, up to giga-...
International audienceLaser-plasma accelerators can produce high quality electron beams, up to giga-...
A laser pulse traveling through a plasma can excite large amplitude plasma waves that can be used to...
A laser pulse traveling through a plasma can excite large amplitude plasma waves that can be used to...
A laser pulse traveling through a plasma can excite large amplitude plasma waves that can be used to...
A laser pulse traveling through a plasma can excite large amplitude plasma waves that can be used to...
The laser wakefield accelerator (LWFA) is a nascent electron acceleration technology characterised b...