International audienceIt is known that relativistic laser plasma interactions can already today induce accelerating fields beyond some TV/m, which are indeed capable to efficiently accelerate plasma background electrons as well as protons. An introduction to the current state of the art will be given and possible applications of these optically induced charged particle sources will be discussed
The physics of the interaction of high-intensity laser pulses with underdense plasma depends not onl...
The chirped pulse amplification (CPA) technique has opened new perspectives in the radiation-matter ...
Particle acceleration by relativistic electron plasma waves generated by intense lasers has been dem...
International audienceIt is known that relativistic laser plasma interactions can already today indu...
International audienceIt is known that relativistic laser–plasma interactions can induce acceleratin...
Studies of charged-particle acceleration processes remain one of the most important areas of researc...
Low density plasmas have long been of interest as a potential medium for particle acceleration since...
International audiencePlasmas irradiated by an intense laser beam have recently been demonstrated to...
The acceleration of electrons in laser plasma interaction has been observed since the seventies, whe...
The physics of the interaction of high-intensity laser pulses with underdense plasma depends not onl...
Recent results from high intensity (up to 5 × 10 20 W/cm 2 ) laser plasma interaction experiments a...
The physics of the interaction of high-intensity laser pulses with underdense plasma depends not onl...
The chirped pulse amplification (CPA) technique has opened new perspectives in the radiation-matter ...
Particle acceleration by relativistic electron plasma waves generated by intense lasers has been dem...
International audienceIt is known that relativistic laser plasma interactions can already today indu...
International audienceIt is known that relativistic laser–plasma interactions can induce acceleratin...
Studies of charged-particle acceleration processes remain one of the most important areas of researc...
Low density plasmas have long been of interest as a potential medium for particle acceleration since...
International audiencePlasmas irradiated by an intense laser beam have recently been demonstrated to...
The acceleration of electrons in laser plasma interaction has been observed since the seventies, whe...
The physics of the interaction of high-intensity laser pulses with underdense plasma depends not onl...
Recent results from high intensity (up to 5 × 10 20 W/cm 2 ) laser plasma interaction experiments a...
The physics of the interaction of high-intensity laser pulses with underdense plasma depends not onl...
The chirped pulse amplification (CPA) technique has opened new perspectives in the radiation-matter ...
Particle acceleration by relativistic electron plasma waves generated by intense lasers has been dem...