We propose a novel approach to characterize the parabolically-shaped pulses that can be generated from more conventional pulses via nonlinear propagation in cascaded sections of commercially available normally dispersive (ND) fibers. The impact of the initial pulse chirp on the passive pulse reshaping is examined. We furthermore demonstrate that the combination of pulse pre-chirping and propagation in a single ND fiber yields a simple, passive method for generating various temporal waveforms of practical interest
Self-phase modulation in fiber amplifiers can significantly degrade the quality of compressed pulses...
International audienceThe study of the combination of Kerr nonlinearity with dispersion in optical fi...
The combination of the third-order optical nonlinearity with chromatic dispersion in optical fibers ...
We propose a novel approach to characterize the parabolically-shaped pulses that can be generated fr...
We numerically and experimentally demonstrate that a Gaussian pulse can be reshaped into a pulse wit...
We propose a simple method for passive nonlinear optical pulse shaping that utilizes pulse prechirpi...
We numerically and experimentally demonstrate that pulses with a parabolic intensity profile can be ...
International audienceWe numerically and experimentally demonstrate that pulses with a parabolic int...
International audienceIn recent years, there has been a growing interest from the photonics communit...
Formation of parabolic pulses at femtosecond time scale by means of passive nonlinear reshaping in n...
The development of new all-optical technologies for data processing and signal manipulation is a fie...
International audienceWhile the combination of Kerr nonlinearity with dispersion in optical fibers c...
While the combination of Kerr nonlinearity with dispersion in optical fibers can seriously impair hi...
International audienceThe development of new all-optical technologies for data processing and signal...
We experimentally demonstrate the possibility to generate parabolic pulses via a single dispersion ...
Self-phase modulation in fiber amplifiers can significantly degrade the quality of compressed pulses...
International audienceThe study of the combination of Kerr nonlinearity with dispersion in optical fi...
The combination of the third-order optical nonlinearity with chromatic dispersion in optical fibers ...
We propose a novel approach to characterize the parabolically-shaped pulses that can be generated fr...
We numerically and experimentally demonstrate that a Gaussian pulse can be reshaped into a pulse wit...
We propose a simple method for passive nonlinear optical pulse shaping that utilizes pulse prechirpi...
We numerically and experimentally demonstrate that pulses with a parabolic intensity profile can be ...
International audienceWe numerically and experimentally demonstrate that pulses with a parabolic int...
International audienceIn recent years, there has been a growing interest from the photonics communit...
Formation of parabolic pulses at femtosecond time scale by means of passive nonlinear reshaping in n...
The development of new all-optical technologies for data processing and signal manipulation is a fie...
International audienceWhile the combination of Kerr nonlinearity with dispersion in optical fibers c...
While the combination of Kerr nonlinearity with dispersion in optical fibers can seriously impair hi...
International audienceThe development of new all-optical technologies for data processing and signal...
We experimentally demonstrate the possibility to generate parabolic pulses via a single dispersion ...
Self-phase modulation in fiber amplifiers can significantly degrade the quality of compressed pulses...
International audienceThe study of the combination of Kerr nonlinearity with dispersion in optical fi...
The combination of the third-order optical nonlinearity with chromatic dispersion in optical fibers ...