International audienceWe present the temporal characterization of infrared pulses with spectra extending from 0.55 to 2.5 µm by using the frequency resolved optical switching (FROSt) technique. The pulses are obtained by broadening femtosecond pulses at 1.75 µm central wavelength in a two-stage hollow core fiber setup. This work demonstrates the capability of the FROSt technique to temporally characterize pulses with ultra-broadband spectra. Being free of phase-matching constraints, it enables the characterization of pulses with very low energy at the limit of the detection threshold and with arbitrary long pulse duration. This strength of the FROSt technique is illustrated by the characterization of supercontinua pulses whose spectra span ...
In this paper, we introduce a pulse characterization technique that is free of phase-matching constr...
This thesis describes methods for using spectral interferometry for the complete space-time characte...
International audienceWe show a practical implementation of a pulse characterization method for sub-...
International audienceWe present the temporal characterization of infrared pulses with spectra exten...
We demonstrate experimentally that frequency resolved optical switching (FROSt) can be used to chara...
International audienceThe frequency-resolved optical switching (FROSt) method developed for ultrasho...
We have post-compressed 25 fs (Fourier limit) amplified pulses in an argon-filled hollow-core fiber....
In this letter we demonstrate the possibility to determine the temporal and spectral structure (spec...
Intense mid-infrared pulses tunable between 5 and 14 \ub5m with pulse energies of several microjoule...
International audienceA phase-matching free ultrashort pulse retrieval based on the defocusing of a ...
In contrast to the case of pulses in the infrared (IR) and visible range, the temporal characterizat...
A novel method for ultrashort IR pulse characterization is presented. The technique utilizes a frequ...
In this paper, we introduce a pulse characterization technique that is free of phase-matching constr...
This thesis describes methods for using spectral interferometry for the complete space-time characte...
International audienceWe show a practical implementation of a pulse characterization method for sub-...
International audienceWe present the temporal characterization of infrared pulses with spectra exten...
We demonstrate experimentally that frequency resolved optical switching (FROSt) can be used to chara...
International audienceThe frequency-resolved optical switching (FROSt) method developed for ultrasho...
We have post-compressed 25 fs (Fourier limit) amplified pulses in an argon-filled hollow-core fiber....
In this letter we demonstrate the possibility to determine the temporal and spectral structure (spec...
Intense mid-infrared pulses tunable between 5 and 14 \ub5m with pulse energies of several microjoule...
International audienceA phase-matching free ultrashort pulse retrieval based on the defocusing of a ...
In contrast to the case of pulses in the infrared (IR) and visible range, the temporal characterizat...
A novel method for ultrashort IR pulse characterization is presented. The technique utilizes a frequ...
In this paper, we introduce a pulse characterization technique that is free of phase-matching constr...
This thesis describes methods for using spectral interferometry for the complete space-time characte...
International audienceWe show a practical implementation of a pulse characterization method for sub-...