Wavelength widely tunable femtosecond sources can be implemented by optically filtering the leftmost/rightmost spectral lobes of a broadened spectrum due to self-phase modulation (SPM) dominated fiber-optic nonlinearities. We numerically and experimentally investigate the feasibility of implementing such a tunable source inside optical fibers with negative group-velocity dispersion (GVD). We show that the spectral broadening prior to soliton fission is dominated by SPM and generates well-isolated spectral lobes; filtering the leftmost/rightmost spectral lobes results in energetic femtosecond pulses with the wavelength tuning range more than 400 nm. Employing an ultrafast Er-fiber laser and a dispersion-shifted fiber with negative GVD, we im...
We theoretically show an approach to generate intense frequency-tunable few-cycle femtosecond pulses...
International audienceWe take advantage of the Raman soliton self-frequency shift experienced during...
Higher order mode (HOM) fibers present a breakthrough in fiber design, in its ability to provide ano...
We demonstrate that energetic femtosecond pulses tunable from 1.3 to 1.7 µm can be achieved using se...
We propose and demonstrate a new approach to implement a wavelength-tunable ultrafast fiber laser so...
We propose and demonstrate a new approach to implement a wavelength-tunable ultrafast fiber laser so...
We demonstrate a megawatt peak power femtosecond source at 1.3 μm based on self-phase modulation ena...
We demonstrate an energy scalable approach to implement ultrafast fiber laser sources suitable for d...
Development of high power/energy ultrafast fiber lasers for scientific research and industrial appli...
We demonstrate a fiber-based tunable femtosecond source covering 1.15–1.35 μm based on self-phase mo...
We report soliton pulse formation and amplification and soliton-self-frequency shifting in an anomal...
A broadband high-energy all-fiber laser at 1.6-μm window with erbium-doped fiber mode locked by nonl...
We demonstrate an Er-fiber laser based source that produces 100-200 fs pulses widely tunable from 13...
We report soliton pulse formation and amplification and soliton-self-frequency shifting in an anomal...
This work experimentally explores the important application of the enhanced self-phase modulation (S...
We theoretically show an approach to generate intense frequency-tunable few-cycle femtosecond pulses...
International audienceWe take advantage of the Raman soliton self-frequency shift experienced during...
Higher order mode (HOM) fibers present a breakthrough in fiber design, in its ability to provide ano...
We demonstrate that energetic femtosecond pulses tunable from 1.3 to 1.7 µm can be achieved using se...
We propose and demonstrate a new approach to implement a wavelength-tunable ultrafast fiber laser so...
We propose and demonstrate a new approach to implement a wavelength-tunable ultrafast fiber laser so...
We demonstrate a megawatt peak power femtosecond source at 1.3 μm based on self-phase modulation ena...
We demonstrate an energy scalable approach to implement ultrafast fiber laser sources suitable for d...
Development of high power/energy ultrafast fiber lasers for scientific research and industrial appli...
We demonstrate a fiber-based tunable femtosecond source covering 1.15–1.35 μm based on self-phase mo...
We report soliton pulse formation and amplification and soliton-self-frequency shifting in an anomal...
A broadband high-energy all-fiber laser at 1.6-μm window with erbium-doped fiber mode locked by nonl...
We demonstrate an Er-fiber laser based source that produces 100-200 fs pulses widely tunable from 13...
We report soliton pulse formation and amplification and soliton-self-frequency shifting in an anomal...
This work experimentally explores the important application of the enhanced self-phase modulation (S...
We theoretically show an approach to generate intense frequency-tunable few-cycle femtosecond pulses...
International audienceWe take advantage of the Raman soliton self-frequency shift experienced during...
Higher order mode (HOM) fibers present a breakthrough in fiber design, in its ability to provide ano...