The generation of ultrastrong attosecond pulses through laser-plasma interactions offers the opportunity to surpass the intensity of any known laboratory radiation source, giving rise to new experimental possibilities, such as quantum electrodynamical tests and matter probing at extremely short scales. Here we demonstrate that a laser irradiated plasma surface can act as an efficient converter from the femto- to the attosecond range, giving a dramatic rise in pulse intensity. Although seemingly similar schemes have been described in the literature, the present setup differs significantly from the previous attempts. We present a model describing the nonlinear process of relativistic laser-plasma interaction. This model, which is applicable t...
Results are presented from analytical study and particle-in-cell simulations of the interaction of u...
In this work we present the derivation of the nonlinear equations that describe the propagation of u...
International audienceThe nonlinear interaction of an intense femtosecond laser pulse with matter ca...
We report on experimental results in a new regime of relativistic light-matter interaction employing...
The thesis is devoted to the analytical and numerical studies of high-order harmonic generation and ...
International audienceThe interaction of low intensity laser pulses with metal nano-structures is at...
We develop an analytical model for ultraintense attosecond pulse emission in the highly relativistic...
International audienceAn experimental study of the interaction of ultrashort laser pulses with under...
We have studied particle acceleration in different nanostructured targets irradiated by high intensi...
Rapid progress in ultra-intense laser technology has resulted in intensity levels surpassing 1022 W/...
Ultrahigh-intensity laser-plasma physics provides unique light and particle beams as well as novel p...
International audienceThe generation of energetic electron bunches by the interaction of a short, ul...
Attosecond (10 -15 s) electron beams will have some important applications in physics, chemistry, ma...
Results are presented from analytical study and particle-in-cell simulations of the interaction of u...
In this work we present the derivation of the nonlinear equations that describe the propagation of u...
International audienceThe nonlinear interaction of an intense femtosecond laser pulse with matter ca...
We report on experimental results in a new regime of relativistic light-matter interaction employing...
The thesis is devoted to the analytical and numerical studies of high-order harmonic generation and ...
International audienceThe interaction of low intensity laser pulses with metal nano-structures is at...
We develop an analytical model for ultraintense attosecond pulse emission in the highly relativistic...
International audienceAn experimental study of the interaction of ultrashort laser pulses with under...
We have studied particle acceleration in different nanostructured targets irradiated by high intensi...
Rapid progress in ultra-intense laser technology has resulted in intensity levels surpassing 1022 W/...
Ultrahigh-intensity laser-plasma physics provides unique light and particle beams as well as novel p...
International audienceThe generation of energetic electron bunches by the interaction of a short, ul...
Attosecond (10 -15 s) electron beams will have some important applications in physics, chemistry, ma...
Results are presented from analytical study and particle-in-cell simulations of the interaction of u...
In this work we present the derivation of the nonlinear equations that describe the propagation of u...
International audienceThe nonlinear interaction of an intense femtosecond laser pulse with matter ca...