[EN]Soliton self-compression is demonstrated during the propagation of high spatial modes in hollow core fibers in the near-infrared spectral region, taking advantage of their negative dispersion response. We have found that there is always an optimum spatial mode to observe this phenomenon, compressing the pulses down to the single-cycle regime without needing any external compression device and with a consequent increase in the output peak power. Our result is relevant for any ultrashort laser application in which few- or single-cycle pulses are crucial
We demonstrate temporal pulse compression in gas-filled kagome hollow-core photonic crystal fiber (P...
We report generation of ultrashort near-UV pulses by soliton self-compression in kagomé-style hollow...
International audienceWe demonstrate self-compression of short-wavelength in-frared pulses in a mult...
Advances in the generation of the shortest optical laser pulses down to the sub-cycle regime promise...
The improvement of techniques for the generation of near-infrared (NIR) few-cycle pulses is paving t...
[EN]The nonlinear propagation of a laser beam in a hollow-core capillary is studied by solving the s...
The possibility of soliton self-compression of ultrashort laser pulses down to the few-cycle regime ...
Soliton dynamics can be used to temporally compress laser pulses to few fs durations in many differe...
The collapse of a laser beam propagating inside a hollow-core fiber is investigated by numerically s...
The physics of strong-field applications requires driver laser pulses that are both energetic and ex...
We demonstrate generation of 7.6 fs near-UV pulses centered at 400 nm via 8-fold soliton-effect self...
We present a new pulse regime in a stretched ultrafast fiber laser based on numerical simulations. T...
We demonstrate a novel pulse-compression technique that uses the self-confinement of two-dimensional...
An novel adjustable adiabatic soliton compression scheme is presented, enabling a coherent pulse sou...
On chip high quality and high degree pulse compression is desirable in the realization of integrated...
We demonstrate temporal pulse compression in gas-filled kagome hollow-core photonic crystal fiber (P...
We report generation of ultrashort near-UV pulses by soliton self-compression in kagomé-style hollow...
International audienceWe demonstrate self-compression of short-wavelength in-frared pulses in a mult...
Advances in the generation of the shortest optical laser pulses down to the sub-cycle regime promise...
The improvement of techniques for the generation of near-infrared (NIR) few-cycle pulses is paving t...
[EN]The nonlinear propagation of a laser beam in a hollow-core capillary is studied by solving the s...
The possibility of soliton self-compression of ultrashort laser pulses down to the few-cycle regime ...
Soliton dynamics can be used to temporally compress laser pulses to few fs durations in many differe...
The collapse of a laser beam propagating inside a hollow-core fiber is investigated by numerically s...
The physics of strong-field applications requires driver laser pulses that are both energetic and ex...
We demonstrate generation of 7.6 fs near-UV pulses centered at 400 nm via 8-fold soliton-effect self...
We present a new pulse regime in a stretched ultrafast fiber laser based on numerical simulations. T...
We demonstrate a novel pulse-compression technique that uses the self-confinement of two-dimensional...
An novel adjustable adiabatic soliton compression scheme is presented, enabling a coherent pulse sou...
On chip high quality and high degree pulse compression is desirable in the realization of integrated...
We demonstrate temporal pulse compression in gas-filled kagome hollow-core photonic crystal fiber (P...
We report generation of ultrashort near-UV pulses by soliton self-compression in kagomé-style hollow...
International audienceWe demonstrate self-compression of short-wavelength in-frared pulses in a mult...