We experimentally demonstrate the synchronization of regularly vibrating soliton molecules by means of an injected modulated signal. Such synchronization is analyzed in real time through the sensitive balanced optical correlation technique. We also unveil the existence of chaotic intra-molecular vibrations, to which we successfully apply a similar control strategy. These findings strengthen the hypothesis of internal dynamics of soliton molecules essentially ruled by a reduced number of degrees of freedom, allowing applicative prospects
International audienceWe demonstrate the synchronization of two soliton molecules separated by sever...
Benefiting from ultrafast temporal resolution, broadband spectral bandwidth, as well as high peak po...
We present a new type of self-sustained vibrations in the fundamental physical model covering a broa...
Compact bound states of light pulses in ultrafast lasers are known as optical soliton molecules. The...
We show that dissipative solitons can have dynamics similar to that of a strange attractor in low-di...
Includes bibliographical references (p. 91-95).Simulating the homogeneous chain, we demonstrate the ...
The emergence of confined structures and pattern formation are exceptional manifestations of nonline...
Optimization of self-starting in passively mode-locked optical soliton fiber laser resonators result...
We propose a theoretical method to model the complex phenomenon of oscillating ultrashort pulse pair...
International audienceWe implement a super-localization method in the time domain that allows the ob...
Non-linear physical systems are considered in the paper aiming at the chaos investigation in dynamic...
Dissipative Kerr solitons in optical microresonators combine nonlinear optical physics with photonic...
International audienceNumerical simulations of a dissipative soliton-similariton laser are shown to ...
International audienceWe report on the experimental and numerical observations of synchronisation an...
Relaxation of the multivibron soliton in molecular chain on lattice vibrations is investigated withi...
International audienceWe demonstrate the synchronization of two soliton molecules separated by sever...
Benefiting from ultrafast temporal resolution, broadband spectral bandwidth, as well as high peak po...
We present a new type of self-sustained vibrations in the fundamental physical model covering a broa...
Compact bound states of light pulses in ultrafast lasers are known as optical soliton molecules. The...
We show that dissipative solitons can have dynamics similar to that of a strange attractor in low-di...
Includes bibliographical references (p. 91-95).Simulating the homogeneous chain, we demonstrate the ...
The emergence of confined structures and pattern formation are exceptional manifestations of nonline...
Optimization of self-starting in passively mode-locked optical soliton fiber laser resonators result...
We propose a theoretical method to model the complex phenomenon of oscillating ultrashort pulse pair...
International audienceWe implement a super-localization method in the time domain that allows the ob...
Non-linear physical systems are considered in the paper aiming at the chaos investigation in dynamic...
Dissipative Kerr solitons in optical microresonators combine nonlinear optical physics with photonic...
International audienceNumerical simulations of a dissipative soliton-similariton laser are shown to ...
International audienceWe report on the experimental and numerical observations of synchronisation an...
Relaxation of the multivibron soliton in molecular chain on lattice vibrations is investigated withi...
International audienceWe demonstrate the synchronization of two soliton molecules separated by sever...
Benefiting from ultrafast temporal resolution, broadband spectral bandwidth, as well as high peak po...
We present a new type of self-sustained vibrations in the fundamental physical model covering a broa...