We numerically and experimentally demonstrate that pulses with a parabolic intensity profile can be formed by passive reshaping of more conventional laser pulses using nonlinear propagation in a length of normally dispersive nonlinear fibre. Moreover, we show that the parabolic shape can be stabilised by launching these pulses into a second length of fiber with suitably different nonlinear and dispersive characteristics relative to the initial reshaping fiber
The development of new all-optical technologies for data processing and signal manipulation is a fie...
Parabolic pulses in optical fibers have stimulated an increasing number of applications. We review h...
Parabolic pulses in optical fibers have stimulated an increasing number of applications. We review h...
International audienceWe numerically and experimentally demonstrate that pulses with a parabolic int...
We numerically and experimentally demonstrate that a Gaussian pulse can be reshaped into a pulse wit...
We propose a novel approach to characterize the parabolically-shaped pulses that can be generated fr...
We experimentally demonstrate the possibility to generate parabolic pulses via a single dispersion d...
We experimentally demonstrate the possibility to generate parabolic pulses via a single dispersion d...
Parabolic pulse generation around 1550 nm in dispersion decreasing comb-like profiled fibre is exper...
We report two recent studies dealing with the evolution of parabolic pulses in normally dispersive f...
In this second talk on dissipative structures in fiber applications, we overview theoretical aspects...
Parabolic pulses in optical fibers have stimulated an increasing number of applications. We review h...
We propose a simple method for passive nonlinear optical pulse shaping that utilizes pulse prechirpi...
Parabolic pulses in optical fibers have stimulated an increasing number of applications. We review h...
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...
Parabolic pulses in optical fibers have stimulated an increasing number of applications. We review h...
Parabolic pulses in optical fibers have stimulated an increasing number of applications. We review h...
International audienceWe numerically and experimentally demonstrate that pulses with a parabolic int...
We numerically and experimentally demonstrate that a Gaussian pulse can be reshaped into a pulse wit...
We propose a novel approach to characterize the parabolically-shaped pulses that can be generated fr...
We experimentally demonstrate the possibility to generate parabolic pulses via a single dispersion d...
We experimentally demonstrate the possibility to generate parabolic pulses via a single dispersion d...
Parabolic pulse generation around 1550 nm in dispersion decreasing comb-like profiled fibre is exper...
We report two recent studies dealing with the evolution of parabolic pulses in normally dispersive f...
In this second talk on dissipative structures in fiber applications, we overview theoretical aspects...
Parabolic pulses in optical fibers have stimulated an increasing number of applications. We review h...
We propose a simple method for passive nonlinear optical pulse shaping that utilizes pulse prechirpi...
Parabolic pulses in optical fibers have stimulated an increasing number of applications. We review h...
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...
Parabolic pulses in optical fibers have stimulated an increasing number of applications. We review h...
Parabolic pulses in optical fibers have stimulated an increasing number of applications. We review h...