The propagation of intense 200 fs pulses in water reveals light filaments not sustained by static balance between Kerr-induced self-focusing and plasma-induced defocusing. Numerical calculations outline the occurrence of a possible scenario where filaments appear because of spontaneous reshaping of the Gaussian input beam into a conical wave, driven by the requirement of maximum localization, maximum stationarity, and minimum nonlinear losses
There is now substantial evidence to indicate that the long damage filaments created by laser beam...
We study ultrashort laser-pulse propagation and filamentation dynamics in dispersive Kerr media. We ...
International audienceWe report measurements concerning the propagation of femtosecond laser pulses ...
The propagation of intense 200 fs pulses in water reveals light filaments not sustained by static ba...
By observing how a light filament generated in water reconstructs itself after hitting a beam stoppe...
We have studied the large-scale beam breakup and filamentation of femtosecond pulses in a Kerr mediu...
In contrast with filamentation of ultrashort laser pulses with standard Gaussian beams in Kerr media...
Filamentation is a complex process that gives rise to many nonlinear interactions. However, the fund...
It is well known that ultrashort, high intensity pulses with peak powers exceedinga certain critical...
We demonstrate an up to now unrecognized and very effective mechanism which prevents filament collap...
We numerically analyze filamentary propagation for various medium- and input pulse parameters and sh...
We demonstrate an up to now unrecognized and very effective mechanism which prevents filament collap...
Modern laser sources nowadays deliver ultrashort light pulses reaching few cycles in duration, high ...
We have studied the large-scale beam breakup and filamentation of femtosecond pulses in a Kerr mediu...
There is now substantial evidence to indicate that the long damage filaments created by laser beam...
We study ultrashort laser-pulse propagation and filamentation dynamics in dispersive Kerr media. We ...
International audienceWe report measurements concerning the propagation of femtosecond laser pulses ...
The propagation of intense 200 fs pulses in water reveals light filaments not sustained by static ba...
By observing how a light filament generated in water reconstructs itself after hitting a beam stoppe...
We have studied the large-scale beam breakup and filamentation of femtosecond pulses in a Kerr mediu...
In contrast with filamentation of ultrashort laser pulses with standard Gaussian beams in Kerr media...
Filamentation is a complex process that gives rise to many nonlinear interactions. However, the fund...
It is well known that ultrashort, high intensity pulses with peak powers exceedinga certain critical...
We demonstrate an up to now unrecognized and very effective mechanism which prevents filament collap...
We numerically analyze filamentary propagation for various medium- and input pulse parameters and sh...
We demonstrate an up to now unrecognized and very effective mechanism which prevents filament collap...
Modern laser sources nowadays deliver ultrashort light pulses reaching few cycles in duration, high ...
We have studied the large-scale beam breakup and filamentation of femtosecond pulses in a Kerr mediu...
There is now substantial evidence to indicate that the long damage filaments created by laser beam...
We study ultrashort laser-pulse propagation and filamentation dynamics in dispersive Kerr media. We ...
International audienceWe report measurements concerning the propagation of femtosecond laser pulses ...