International audienceWe theoretically study the effects of the temporal intensity profile of the initial pulse on the nonlinear spectral compression process arising from nonlinear propagation in an optical fibre. Various linearly chirped input pulse profiles are considered, and their dynamics is explained with the aid of time-frequency representations. While initially parabolic-shaped pulses show enhanced spectral compression compared to Gaussian pulses, no significant spectral narrowing occurs when initially super-Gaussian pulses are used. Triangular pulses lead to a spectral interference phenomenon similar to the Fresnel bi-prism experiment
We study theoretically the spectral intensity evolutions of the femtosecond Gaussian and parabolic p...
International audienceThe study of the combination of Kerr nonlinearity with dispersion in optical fi...
International audienceWhile the combination of Kerr nonlinearity with dispersion in optical fibers c...
International audienceWe theoretically study the effects of the temporal intensity profile of the in...
We propose two new approaches to enhance the spectral compression process arising from nonlinear pul...
We propose a new, simple approach to enhance the spectral compression process arising from nonlinear...
International audienceWe propose a new, simple approach to enhance the spectral compression process ...
The development of new all-optical technologies for data processing and signal manipulation is a fie...
International audienceWe present comprehensive design rules to optimize the process of spectral comp...
International audienceThe development of new all-optical technologies for data processing and signal...
International audienceWe demonstrate efficient spectral compression of picosecond pulses in an all-f...
We propose two new applications of the spectral focusing by self-phase modulation that occurs in a n...
We numerically study the effects of amplitude fluctuations and signal-to-noise ratio degradation of ...
International audienceWe demonstrate efficient spectral compression of picosecond pulses in an all-f...
We study theoretically the spectral intensity evolutions of the femtosecond Gaussian and parabolic p...
International audienceThe study of the combination of Kerr nonlinearity with dispersion in optical fi...
International audienceWhile the combination of Kerr nonlinearity with dispersion in optical fibers c...
International audienceWe theoretically study the effects of the temporal intensity profile of the in...
We propose two new approaches to enhance the spectral compression process arising from nonlinear pul...
We propose a new, simple approach to enhance the spectral compression process arising from nonlinear...
International audienceWe propose a new, simple approach to enhance the spectral compression process ...
The development of new all-optical technologies for data processing and signal manipulation is a fie...
International audienceWe present comprehensive design rules to optimize the process of spectral comp...
International audienceThe development of new all-optical technologies for data processing and signal...
International audienceWe demonstrate efficient spectral compression of picosecond pulses in an all-f...
We propose two new applications of the spectral focusing by self-phase modulation that occurs in a n...
We numerically study the effects of amplitude fluctuations and signal-to-noise ratio degradation of ...
International audienceWe demonstrate efficient spectral compression of picosecond pulses in an all-f...
We study theoretically the spectral intensity evolutions of the femtosecond Gaussian and parabolic p...
International audienceThe study of the combination of Kerr nonlinearity with dispersion in optical fi...
International audienceWhile the combination of Kerr nonlinearity with dispersion in optical fibers c...