International audienceThe frequency-resolved optical switching (FROSt) method developed for ultrashort pulse characterization is implemented for single-shot measurements. In this basic demonstration, the delay axis of the spectrogram is spatially encoded by the pump beam having a small incident angle with the photoexcited material. We present the calibration procedure for spectrograms acquired in single-shot and the temporal characterization of 44 fs pulses with central wavelength at 800 nm both in scanning and single-shot FROSt configurations. The retrieved pulses are compared by means of the root-mean-square field error. Finally, the pulses are propagated through a known dispersive material to measure the added group-delay dispersion
We demonstrate single-shot time-frequency imaging spectroscopy with an echelon mirror for measuring ...
A phase-locked terahertz transient is exploited as an ultrafast phase gate for femtosecond optical p...
[EN] We demonstrate a single-shot ultrafast diagnostic, based on the dispersion-scan (d-scan) techni...
International audienceThe frequency-resolved optical switching (FROSt) method developed for ultrasho...
International audienceA phase-matching free ultrashort pulse retrieval based on the defocusing of a ...
International audienceIn this paper, we introduce a pulse characterization technique that is free of...
Ultrashort laser pulses play an important role in many applications in science and technology, from ...
International audienceWe present the temporal characterization of infrared pulses with spectra exten...
We present a novel method for measuring amplitude and phase of ultrashort optical pulses. The techni...
Thesis (Ph. D.)--University of Rochester. Institute of Optics, 2004.Ultrafast optical pulses are use...
We present a new phase characterization technique for ultrashort laser pulses that employs self-phas...
Ultrashort laser pulses are nowadays widely used in both the basic and applied reseach as well as in...
The resolution of ultrafast studies performed at extreme ultraviolet and X-ray free-electron lasers ...
National Natural Science Foundation of China [61205103]The dispersive Fourier transform is suitable ...
We propose and demonstrate a simple method for the full characterization of an ultrashort optical pu...
We demonstrate single-shot time-frequency imaging spectroscopy with an echelon mirror for measuring ...
A phase-locked terahertz transient is exploited as an ultrafast phase gate for femtosecond optical p...
[EN] We demonstrate a single-shot ultrafast diagnostic, based on the dispersion-scan (d-scan) techni...
International audienceThe frequency-resolved optical switching (FROSt) method developed for ultrasho...
International audienceA phase-matching free ultrashort pulse retrieval based on the defocusing of a ...
International audienceIn this paper, we introduce a pulse characterization technique that is free of...
Ultrashort laser pulses play an important role in many applications in science and technology, from ...
International audienceWe present the temporal characterization of infrared pulses with spectra exten...
We present a novel method for measuring amplitude and phase of ultrashort optical pulses. The techni...
Thesis (Ph. D.)--University of Rochester. Institute of Optics, 2004.Ultrafast optical pulses are use...
We present a new phase characterization technique for ultrashort laser pulses that employs self-phas...
Ultrashort laser pulses are nowadays widely used in both the basic and applied reseach as well as in...
The resolution of ultrafast studies performed at extreme ultraviolet and X-ray free-electron lasers ...
National Natural Science Foundation of China [61205103]The dispersive Fourier transform is suitable ...
We propose and demonstrate a simple method for the full characterization of an ultrashort optical pu...
We demonstrate single-shot time-frequency imaging spectroscopy with an echelon mirror for measuring ...
A phase-locked terahertz transient is exploited as an ultrafast phase gate for femtosecond optical p...
[EN] We demonstrate a single-shot ultrafast diagnostic, based on the dispersion-scan (d-scan) techni...