International audienceThe short-lived longitudinal plasma oscillations generated during filamentation in argon and nitrogen gas are measured with a specially designed current monitor. The magnitude and initial direction of the corresponding currents depend sensitively on laser polarization and nature of the gas. The results are interpreted as resulting from the competition between two forces acting on free electrons born during the filamentation process: the Lorentz laser force and a Coulomb wake force resulting from a lateral expansion of the plasma
When an intense femtosecond laser pulse propagates in a gas, it undergoes filamentation, a spectacul...
International audienceThe spatial motion and effective duration of a traveling plasma grating formed...
International audienceWe demonstrate tunable radiofrequency emission from a meter-long linear plasma...
International audienceThe short-lived longitudinal plasma oscillations generated during filamentatio...
International audienceThe short-lived longitudinal plasma oscillations generated during filamentatio...
International audienceThe short-lived longitudinal plasma oscillations generated during filamentatio...
Spontaneous currents inside the plasma column of filaments of N2 and Argon circulate in opposite dir...
International audienceThe spatial motion and effective duration of a traveling plasma grating formed...
International audienceThe spatial motion and effective duration of a traveling plasma grating formed...
International audienceThe spatial motion and effective duration of a traveling plasma grating formed...
International audienceThe spatial motion and effective duration of a traveling plasma grating formed...
When an intense femtosecond laser pulse propagates in a gas, it undergoes filamentation, a spectacul...
When an intense femtosecond laser pulse propagates in a gas, it undergoes filamentation, a spectacul...
International audienceWe demonstrate tunable radiofrequency emission from a meter-long linear plasma...
When an intense femtosecond laser pulse propagates in a gas, it undergoes filamentation, a spectacul...
When an intense femtosecond laser pulse propagates in a gas, it undergoes filamentation, a spectacul...
International audienceThe spatial motion and effective duration of a traveling plasma grating formed...
International audienceWe demonstrate tunable radiofrequency emission from a meter-long linear plasma...
International audienceThe short-lived longitudinal plasma oscillations generated during filamentatio...
International audienceThe short-lived longitudinal plasma oscillations generated during filamentatio...
International audienceThe short-lived longitudinal plasma oscillations generated during filamentatio...
Spontaneous currents inside the plasma column of filaments of N2 and Argon circulate in opposite dir...
International audienceThe spatial motion and effective duration of a traveling plasma grating formed...
International audienceThe spatial motion and effective duration of a traveling plasma grating formed...
International audienceThe spatial motion and effective duration of a traveling plasma grating formed...
International audienceThe spatial motion and effective duration of a traveling plasma grating formed...
When an intense femtosecond laser pulse propagates in a gas, it undergoes filamentation, a spectacul...
When an intense femtosecond laser pulse propagates in a gas, it undergoes filamentation, a spectacul...
International audienceWe demonstrate tunable radiofrequency emission from a meter-long linear plasma...
When an intense femtosecond laser pulse propagates in a gas, it undergoes filamentation, a spectacul...
When an intense femtosecond laser pulse propagates in a gas, it undergoes filamentation, a spectacul...
International audienceThe spatial motion and effective duration of a traveling plasma grating formed...
International audienceWe demonstrate tunable radiofrequency emission from a meter-long linear plasma...