International audienceWe demonstrate nonlinear temporal compression of a high-energy Yb-doped fiber laser source in a multipass cell filled with argon. The 160 μJ 275 fs input pulses are compressed down to 135 μJ 33 fs at the output, corresponding to an overall transmission of 85%. We also analyze the output beam, revealing essentially no space-time couplings. We believe this technique can be scalable to higher pulse energies and shorter pulse durations, enabling access to a wider parameter range for a large variety of ultrafast laser sources
We demonstrate single-stage post-compression of an Ytterbium fiber laser to about 20 fs based on spe...
In this contribution we demonstrate the nonlinear pulse compression of an ultrafast thulium-doped fi...
We demonstrate that nonlinear fiber compression is possible at unprecedented average power levels by...
International audienceWe demonstrate nonlinear temporal compression of a high-energy Yb-doped fiber ...
We demonstrate nonlinear compression of pulses at 1.03 µm and repetition rate of 200 kHz generated b...
We demonstrate a scheme for nonlinear pulse compression at high average powers based on self-phase m...
Nonlinear pulse post-compression represents an efficient method for ultrashort, high-quality laser p...
Post-compression methods for ultrafast laser pulses typically face challenging limitations, includin...
International audienceWe report on the nonlinear temporal compression of mJ energy pulses from a Ti:...
Compression of 42 fs, 0.29 mJ pulses from a Ti:Sapphire amplifier down to 8 fs (approximately 3 opti...
International audienceWe demonstrate self-compression of short-wavelength in-frared pulses in a mult...
Nonlinear pulse compression of ultrashort pulses is an established method for reducing the pulse dur...
We demonstrate nonlinear pulse compression by multi-pass cell spectral broadening (MPCSB) from 860 f...
We demonstrate single-stage post-compression of an Ytterbium fiber laser to about 20 fs based on spe...
In this contribution we demonstrate the nonlinear pulse compression of an ultrafast thulium-doped fi...
We demonstrate that nonlinear fiber compression is possible at unprecedented average power levels by...
International audienceWe demonstrate nonlinear temporal compression of a high-energy Yb-doped fiber ...
We demonstrate nonlinear compression of pulses at 1.03 µm and repetition rate of 200 kHz generated b...
We demonstrate a scheme for nonlinear pulse compression at high average powers based on self-phase m...
Nonlinear pulse post-compression represents an efficient method for ultrashort, high-quality laser p...
Post-compression methods for ultrafast laser pulses typically face challenging limitations, includin...
International audienceWe report on the nonlinear temporal compression of mJ energy pulses from a Ti:...
Compression of 42 fs, 0.29 mJ pulses from a Ti:Sapphire amplifier down to 8 fs (approximately 3 opti...
International audienceWe demonstrate self-compression of short-wavelength in-frared pulses in a mult...
Nonlinear pulse compression of ultrashort pulses is an established method for reducing the pulse dur...
We demonstrate nonlinear pulse compression by multi-pass cell spectral broadening (MPCSB) from 860 f...
We demonstrate single-stage post-compression of an Ytterbium fiber laser to about 20 fs based on spe...
In this contribution we demonstrate the nonlinear pulse compression of an ultrafast thulium-doped fi...
We demonstrate that nonlinear fiber compression is possible at unprecedented average power levels by...