International audienceWe observe the complete dynamics of the propagation of very intense, femtosecond laser pulses in air under tight focusing conditions via direct imaging of the entire interaction zone. The whole life history of the focused pulses is then reconstructed by means of numerical simulations. We show that beam breakup leads to a dual-rate increase in filament numbers with laser power. Linearly and circularly polarized pulses give rise to beam breakup and fusion governed by external focusing conditions. For tight focusing conditions, intensity saturation due to plasma generation and nonlinear losses does not limit the intensity growth, thereby giving access to a new propagation regime featured by an efficient laser energy depos...
A theoretical investigation of ultrashort pulse propagation in various transparent media has been ca...
This is a review of some recent development in femtosecond filamentation science with emphasis on ou...
We experimentally and numerically characterize multiple filamentation of laser pulses with incident ...
International audienceWe observe the complete dynamics of the propagation of very intense, femtoseco...
Long distance propagation, or filamentation, of short, intense laser pulses is suggested to be possi...
The spatial evolution of filaments in air was experimentally investigated and compared with theoreti...
We investigate the evolution of filamentation in air by using a longitudinal diffraction method and ...
A peculiar propagation of intense femtosecond laser pulses is observed in air without apparent diffr...
The propagation of intense picosecond laser pulses in air in the presence of strong nonlinear self-a...
The spatial evolution of plasma filaments in air induced by femtosecond laser pulses is investigated...
International audienceExperiments in which several-meter-long infrared ultrashort laser pulses are g...
It is well known that ultrashort, high intensity pulses with peak powers exceedinga certain critical...
Filamentation characteristics of tightly focused 45 fs laser pulses in air are investigated using tr...
Focused propagation of high-power femtosecond laser radiation in air is considered. Based on numeri...
Dachraoui H, Oberer C, Michelswirth M, Heinzmann U. Direct time-domain observation of laser pulse fi...
A theoretical investigation of ultrashort pulse propagation in various transparent media has been ca...
This is a review of some recent development in femtosecond filamentation science with emphasis on ou...
We experimentally and numerically characterize multiple filamentation of laser pulses with incident ...
International audienceWe observe the complete dynamics of the propagation of very intense, femtoseco...
Long distance propagation, or filamentation, of short, intense laser pulses is suggested to be possi...
The spatial evolution of filaments in air was experimentally investigated and compared with theoreti...
We investigate the evolution of filamentation in air by using a longitudinal diffraction method and ...
A peculiar propagation of intense femtosecond laser pulses is observed in air without apparent diffr...
The propagation of intense picosecond laser pulses in air in the presence of strong nonlinear self-a...
The spatial evolution of plasma filaments in air induced by femtosecond laser pulses is investigated...
International audienceExperiments in which several-meter-long infrared ultrashort laser pulses are g...
It is well known that ultrashort, high intensity pulses with peak powers exceedinga certain critical...
Filamentation characteristics of tightly focused 45 fs laser pulses in air are investigated using tr...
Focused propagation of high-power femtosecond laser radiation in air is considered. Based on numeri...
Dachraoui H, Oberer C, Michelswirth M, Heinzmann U. Direct time-domain observation of laser pulse fi...
A theoretical investigation of ultrashort pulse propagation in various transparent media has been ca...
This is a review of some recent development in femtosecond filamentation science with emphasis on ou...
We experimentally and numerically characterize multiple filamentation of laser pulses with incident ...