We review recent results on periodic pulsations of the soliton parameters in a passively mode-locked fiber laser. Solitons change their shape, amplitude, width and velocity periodically in time. These pulsations are limit cycles of a dissipative nonlinear system in an infinite-dimensional phase space. Pulsation periods can vary from a few to hundreds of round trips. We present a continuous model of a laser as well as a model with parameter management. The results of the modeling are supported with experimental results obtained using a fiber laser. © World Scientific Publishing Company.Peer Reviewe
A model describing the dissipative soliton evolution in a passively mode-locked fiber laser is propo...
In this first talk on dissipative structures in fiber applications, we extend theory of dispersion-m...
International audienceDissipative solitons are localized formations of an electromagnetic field that...
We report recent results on periodic pulsations of the soliton parameters in a passively mode-locked...
The multiple-period pulsations of the soliton parameters in a passively mode-locked fiber laser were...
The multiple-period pulsations of the soliton parameters in a passively mode-locked fiber laser were...
International audienceWe report on our direct experimental observation of a new regime of operation ...
Due to their compact structure, convenient collimation, flexible design, and improving pulse intensi...
Research has shown that passively mode-locked fiber lasers produce chaotic output, which has caught ...
Passively mode-locked fiber lasers due to their capability of generating ultrashort pulses, low cost...
We report on our direct experimental observation of a new regime of operation of passively mode-lock...
International audienceThe recent concept of a dissipative optical soliton sheds new light for unders...
The soliton formation and evolution are numerically and experimentally investigated in passively-mod...
This chapter gives a comprehensive review of collective soliton dynamics in passively mode-locked fi...
Dissipative soliton evolution in passively mode-locked fiber lasers with large net-normal-dispersion...
A model describing the dissipative soliton evolution in a passively mode-locked fiber laser is propo...
In this first talk on dissipative structures in fiber applications, we extend theory of dispersion-m...
International audienceDissipative solitons are localized formations of an electromagnetic field that...
We report recent results on periodic pulsations of the soliton parameters in a passively mode-locked...
The multiple-period pulsations of the soliton parameters in a passively mode-locked fiber laser were...
The multiple-period pulsations of the soliton parameters in a passively mode-locked fiber laser were...
International audienceWe report on our direct experimental observation of a new regime of operation ...
Due to their compact structure, convenient collimation, flexible design, and improving pulse intensi...
Research has shown that passively mode-locked fiber lasers produce chaotic output, which has caught ...
Passively mode-locked fiber lasers due to their capability of generating ultrashort pulses, low cost...
We report on our direct experimental observation of a new regime of operation of passively mode-lock...
International audienceThe recent concept of a dissipative optical soliton sheds new light for unders...
The soliton formation and evolution are numerically and experimentally investigated in passively-mod...
This chapter gives a comprehensive review of collective soliton dynamics in passively mode-locked fi...
Dissipative soliton evolution in passively mode-locked fiber lasers with large net-normal-dispersion...
A model describing the dissipative soliton evolution in a passively mode-locked fiber laser is propo...
In this first talk on dissipative structures in fiber applications, we extend theory of dispersion-m...
International audienceDissipative solitons are localized formations of an electromagnetic field that...