We investigate analytically, numerically, and experimentally the spectral broadening of pulses that undergo the formation of dispersive shocks, addressing in particular pulses in the range of tens of ps generated via electro-optic modulation of a continuous-wave laser. We give an analytical estimate of the maximal spectral extension and show that super-Gaussian waveforms favor the generation of flat-topped spectra. We also show that the weak residual background of the modulator produces undesired spectral ripples. Spectral measurements confirm our estimates and agree well with numerical integration of the nonlinear Schroedinger equation
We experimentally report the observation of dispersive shock waves from a short pulse superimposed t...
We have observed the formation of an optical intensity shock and the subsequent wave breaking in the...
International audienceWhile the combination of Kerr nonlinearity with dispersion in optical fibers c...
International audienceWe investigate analytically, numerically and experimentally the spectral broad...
We experimentally report the observation of dispersive shock waves from a short pulse superimposed o...
We discuss the physics of shock waves with special emphasis on the phenomena related to the field of...
We study the modulation equations for the amplitude and phase of smoothed rectangular pulse initial ...
A general theory is presented to describe the effects of dispersion fluctuations on optical pulses p...
International audienceThe study of the combination of Kerr nonlinearity with dispersion in optical fi...
We demonstrate a ballistic dispersive shock wave in optical fibers induced by cross-phase modulation...
Four different types of pulses are experimentally obtained in one erbium-doped all-fiber laser with ...
We show that pulses undergoing wave breaking in nonlinear weakly dispersive fibers radiate, owing to...
We study the supercontinuum process in optical fibers numerically for a variety of dispersion profil...
Supercontinuum sources generated by continuous-wave excitation are very promising for many applicati...
A method is shown for preventing temporal broadening of ultrafast optical pulses in highly dispersiv...
We experimentally report the observation of dispersive shock waves from a short pulse superimposed t...
We have observed the formation of an optical intensity shock and the subsequent wave breaking in the...
International audienceWhile the combination of Kerr nonlinearity with dispersion in optical fibers c...
International audienceWe investigate analytically, numerically and experimentally the spectral broad...
We experimentally report the observation of dispersive shock waves from a short pulse superimposed o...
We discuss the physics of shock waves with special emphasis on the phenomena related to the field of...
We study the modulation equations for the amplitude and phase of smoothed rectangular pulse initial ...
A general theory is presented to describe the effects of dispersion fluctuations on optical pulses p...
International audienceThe study of the combination of Kerr nonlinearity with dispersion in optical fi...
We demonstrate a ballistic dispersive shock wave in optical fibers induced by cross-phase modulation...
Four different types of pulses are experimentally obtained in one erbium-doped all-fiber laser with ...
We show that pulses undergoing wave breaking in nonlinear weakly dispersive fibers radiate, owing to...
We study the supercontinuum process in optical fibers numerically for a variety of dispersion profil...
Supercontinuum sources generated by continuous-wave excitation are very promising for many applicati...
A method is shown for preventing temporal broadening of ultrafast optical pulses in highly dispersiv...
We experimentally report the observation of dispersive shock waves from a short pulse superimposed t...
We have observed the formation of an optical intensity shock and the subsequent wave breaking in the...
International audienceWhile the combination of Kerr nonlinearity with dispersion in optical fibers c...