International audienceWe investigate multi-wave mixing associated with the strongly pump depleted regime of induced modulation instability (MI) in optical fibers. For a complete transfer of pump power into the sideband modes, we theoretically and experimentally demonstrate that it is necessary to use a much lower seeding modulation frequency than the peak MI gain value. Our experiment shows that, at such optimal modulation frequency, a record 95 % of the output pump power is frequency converted into the comb of sidebands, in good quantitative agreement with analytical predictions based on the simplest exact breather solution of the nonlinear Schrödinger equation
We demonstrate experimentally that multiple four-wave mixing (FWM) pumped by a dual-frequency input ...
We investigate the generation mechanisms for ultra-wide spectra in nonlinear optical fibers. Soliton...
We analyze fiber systems where the linear losses act as a strong perturbation, causing a frequency d...
International audienceWe investigate multi-wave mixing associated with the strongly pump depleted re...
In this letter, we analyze the relationship between four-wave mixing (FWM) and modulational instabil...
Modulation instability (MI) induced by two strong beams and a weak beam via cross phase modulation i...
We show that modulational instability pumped by a mixed mode beam propagating in a high-birefiingenc...
Modulational instability (MI), as a phenomenon in dispersive nonlinear mediums has been a recent int...
International audienceThis paper summarizes analytic results describing the spectral broadening asso...
This chapter presents an overview of the analysis of the nonlinear dynamics of Modulation instabilit...
International audienceWe analyze modulational instability (MI) of light waves in fiber systems with ...
Modulation instability is thoroughly investigated and a simple analytical model for its power critic...
Induced modulation instability in a lossless optical fiber is studied by means of numerical simulati...
© 2018 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for a...
International audienceIn standard optical fibers with constant chromatic dispersion, modulational in...
We demonstrate experimentally that multiple four-wave mixing (FWM) pumped by a dual-frequency input ...
We investigate the generation mechanisms for ultra-wide spectra in nonlinear optical fibers. Soliton...
We analyze fiber systems where the linear losses act as a strong perturbation, causing a frequency d...
International audienceWe investigate multi-wave mixing associated with the strongly pump depleted re...
In this letter, we analyze the relationship between four-wave mixing (FWM) and modulational instabil...
Modulation instability (MI) induced by two strong beams and a weak beam via cross phase modulation i...
We show that modulational instability pumped by a mixed mode beam propagating in a high-birefiingenc...
Modulational instability (MI), as a phenomenon in dispersive nonlinear mediums has been a recent int...
International audienceThis paper summarizes analytic results describing the spectral broadening asso...
This chapter presents an overview of the analysis of the nonlinear dynamics of Modulation instabilit...
International audienceWe analyze modulational instability (MI) of light waves in fiber systems with ...
Modulation instability is thoroughly investigated and a simple analytical model for its power critic...
Induced modulation instability in a lossless optical fiber is studied by means of numerical simulati...
© 2018 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for a...
International audienceIn standard optical fibers with constant chromatic dispersion, modulational in...
We demonstrate experimentally that multiple four-wave mixing (FWM) pumped by a dual-frequency input ...
We investigate the generation mechanisms for ultra-wide spectra in nonlinear optical fibers. Soliton...
We analyze fiber systems where the linear losses act as a strong perturbation, causing a frequency d...