International audienceWe experimentally demonstrate the generation of a temporal pulse doublet from the propagation of an initial super-Gaussian waveform in a nonlinear focusing medium. The picosecond structures are characterized both in amplitude and phase and their close-to-Gaussian Fourier-transform limited shape is found in excellent agreement with numerical simulations. This nonlinear fiber-based single-stage reshaping scheme is energy efficient, can sustain GHz repetition rates and temporal compression factors around 10 are demonstrated
Using a model for the shape of tapered fiber optics, we numerically study the effect of the taper sh...
Using a model for the shape of tapered fiber optics, we numerically study the effect of the taper sh...
International audienceWhile the combination of Kerr nonlinearity with dispersion in optical fibers c...
International audienceWe experimentally demonstrate the generation of a temporal pulse doublet from ...
We experimentally demonstrate the generation of temporal pulse doublets from the propagation of init...
International audienceThe generation of picosecond pulse trains has become of great interest for man...
We demonstrate high quality pulse compression at high repetition rates by use of spectral broadening...
International audienceThe development of new all-optical technologies for data processing and signal...
We theoretically and experimentally investigate the design of a high-repetition rate source deliveri...
The development of new all-optical technologies for data processing and signal manipulation is a fie...
International audienceNonlinear phenomena occurring in optical fibres have many attractive features ...
International audienceThe development of new all-optical technologies for data processing and signal...
International audienceThe study of the combination of Kerr nonlinearity with dispersion in optical fi...
International audienceIn this paper, we numerically and experimentally study two methods to generate...
A stable beat-signal produced by two comb-phase-locked CW lasers separated by >100 GHz is nonline...
Using a model for the shape of tapered fiber optics, we numerically study the effect of the taper sh...
Using a model for the shape of tapered fiber optics, we numerically study the effect of the taper sh...
International audienceWhile the combination of Kerr nonlinearity with dispersion in optical fibers c...
International audienceWe experimentally demonstrate the generation of a temporal pulse doublet from ...
We experimentally demonstrate the generation of temporal pulse doublets from the propagation of init...
International audienceThe generation of picosecond pulse trains has become of great interest for man...
We demonstrate high quality pulse compression at high repetition rates by use of spectral broadening...
International audienceThe development of new all-optical technologies for data processing and signal...
We theoretically and experimentally investigate the design of a high-repetition rate source deliveri...
The development of new all-optical technologies for data processing and signal manipulation is a fie...
International audienceNonlinear phenomena occurring in optical fibres have many attractive features ...
International audienceThe development of new all-optical technologies for data processing and signal...
International audienceThe study of the combination of Kerr nonlinearity with dispersion in optical fi...
International audienceIn this paper, we numerically and experimentally study two methods to generate...
A stable beat-signal produced by two comb-phase-locked CW lasers separated by >100 GHz is nonline...
Using a model for the shape of tapered fiber optics, we numerically study the effect of the taper sh...
Using a model for the shape of tapered fiber optics, we numerically study the effect of the taper sh...
International audienceWhile the combination of Kerr nonlinearity with dispersion in optical fibers c...