On-demand synthesis and dissociation of soliton molecules are controlled to occur simultaneously in massively parallel trapping potentials in an optomechanical lattice, unfolding the stochastic multi-soliton dynamics and enabling statistical insights
We address the dynamics of higher-order solitons in optical lattices, and predict their self-splitti...
We address the dynamics of higher-order solitons in optical lattices, and predict their self-splitti...
International audienceThe recent concept of a dissipative optical soliton sheds new light for unders...
Mode-locked lasers have been widely used to explore interactions between optical solitons, including...
We enter the multi-stability regime of an optical microresonator to generate heteronuclear soliton m...
Self-assembly of fundamental elements through weak, long-range interactions plays a central role in ...
We report on the evolution of dissipative-soliton laser from single pulse to soliton molecule, lastl...
A study was performed on the generation of robust self-sustained clusters of soliton bullets. The st...
We demonstrate a peculiar mechanism for the formation of bound states of light pulses of substantial...
A summary is presented of several results obtained recently concerning the time evolution of a solit...
Compact bound states of light pulses in ultrafast lasers are known as optical soliton molecules. The...
In view of current research effort on semiconducting photonic-crystal defect microcavities, we consi...
We describe different types of self-trapped optical beam carrying phase dislocations, including vort...
Benefiting from ultrafast temporal resolution, broadband spectral bandwidth, as well as high peak po...
Optical solitons provide unique opportunities for the control of light‐bylight. Today, the field of ...
We address the dynamics of higher-order solitons in optical lattices, and predict their self-splitti...
We address the dynamics of higher-order solitons in optical lattices, and predict their self-splitti...
International audienceThe recent concept of a dissipative optical soliton sheds new light for unders...
Mode-locked lasers have been widely used to explore interactions between optical solitons, including...
We enter the multi-stability regime of an optical microresonator to generate heteronuclear soliton m...
Self-assembly of fundamental elements through weak, long-range interactions plays a central role in ...
We report on the evolution of dissipative-soliton laser from single pulse to soliton molecule, lastl...
A study was performed on the generation of robust self-sustained clusters of soliton bullets. The st...
We demonstrate a peculiar mechanism for the formation of bound states of light pulses of substantial...
A summary is presented of several results obtained recently concerning the time evolution of a solit...
Compact bound states of light pulses in ultrafast lasers are known as optical soliton molecules. The...
In view of current research effort on semiconducting photonic-crystal defect microcavities, we consi...
We describe different types of self-trapped optical beam carrying phase dislocations, including vort...
Benefiting from ultrafast temporal resolution, broadband spectral bandwidth, as well as high peak po...
Optical solitons provide unique opportunities for the control of light‐bylight. Today, the field of ...
We address the dynamics of higher-order solitons in optical lattices, and predict their self-splitti...
We address the dynamics of higher-order solitons in optical lattices, and predict their self-splitti...
International audienceThe recent concept of a dissipative optical soliton sheds new light for unders...