We present an approach to generate paraxial laser beams with arbitrary spatial distribution in the femtosecond time regime. The proposed technique is based upon a pair of volume phase holographic gratings working in parallel arrangement. It exploits the spatial coherence properties of the incoming laser beam in a compact and robust setup that mitigates angular and spatial chirp. The gratings were recorded in a photopolymerizable glass with a high optical damage threshold and a large optical throughput. Setup performance is studied and experimentally demonstrated by generating Laguerre\u2013Gaussian femtosecond pulses.Peer reviewed: YesNRC publication: Ye
International audienceFemtosecond laser processing of bulk transparent materials can generate locali...
32nd International Physics Congress of Turkish-Physical-Society (TPS) -- SEP 06-09, 2016 -- Bodrum, ...
International audienceThe spatio-temporal design of ultrafast laser excitation can have a determinan...
We present the capability of the holographic gratings implemented in photopolymerizable glasses to b...
The majority of the applications of ultrashort laser pulses require a control of its spectral bandwi...
International audienceAccelerating beams are a novel class of optical waves where the localized inte...
We experimentally demonstrate that small misalignments of the pulse stretcher or compressor of our c...
The spectral dispersion of ultrashort pulses allows the simultaneous focusing of light in both space...
Space-time wave packets are a class of pulsed optical beams that are di raction-free and dispersion-...
A computer generated hologram (CGH) reconstructed with a sub-100-fs laser pulse at the focal plane o...
Femtosecond laser pulses can be applied for structuring a wide range of ransparent materials. Here w...
International audienceMultiphoton excitation by temporally focused pulses can be combined with spati...
International audienceWe generate arbitrary convex accelerating beams by direct application of an ap...
Simultaneous spatially and temporally focussing (SSTF) of ultrashort pulses allows for an unpreceden...
Plane-wave transmission gratings were stored in the same location of silver- doped photopolymer ¯lm ...
International audienceFemtosecond laser processing of bulk transparent materials can generate locali...
32nd International Physics Congress of Turkish-Physical-Society (TPS) -- SEP 06-09, 2016 -- Bodrum, ...
International audienceThe spatio-temporal design of ultrafast laser excitation can have a determinan...
We present the capability of the holographic gratings implemented in photopolymerizable glasses to b...
The majority of the applications of ultrashort laser pulses require a control of its spectral bandwi...
International audienceAccelerating beams are a novel class of optical waves where the localized inte...
We experimentally demonstrate that small misalignments of the pulse stretcher or compressor of our c...
The spectral dispersion of ultrashort pulses allows the simultaneous focusing of light in both space...
Space-time wave packets are a class of pulsed optical beams that are di raction-free and dispersion-...
A computer generated hologram (CGH) reconstructed with a sub-100-fs laser pulse at the focal plane o...
Femtosecond laser pulses can be applied for structuring a wide range of ransparent materials. Here w...
International audienceMultiphoton excitation by temporally focused pulses can be combined with spati...
International audienceWe generate arbitrary convex accelerating beams by direct application of an ap...
Simultaneous spatially and temporally focussing (SSTF) of ultrashort pulses allows for an unpreceden...
Plane-wave transmission gratings were stored in the same location of silver- doped photopolymer ¯lm ...
International audienceFemtosecond laser processing of bulk transparent materials can generate locali...
32nd International Physics Congress of Turkish-Physical-Society (TPS) -- SEP 06-09, 2016 -- Bodrum, ...
International audienceThe spatio-temporal design of ultrafast laser excitation can have a determinan...