Frequency combs have become a prominent research area in optics. Of particular interest as integrated comb technology are chip-scale sources, such as semiconductor lasers and microresonators, which consist of resonators embedding a nonlinear medium either with or without population inversion. Such active and passive cavities were so far treated distinctly. Here we propose a formal unification by introducing a general equation that describes both types of cavities. The equation also captures the physics of a hybrid device - a semiconductor ring laser with an external optical drive - in which we show the existence of temporal solitons, previously identified only in microresonators, thanks to symmetry breaking and self-localization phenomena t...
In many disciplines, states that emerge in open systems far from equilibrium are determined by a few...
In many disciplines, states that emerge in open systems far from equilibrium are determined by a few...
Microresonator frequency combs hold promise for enabling a new class of light sources that are simul...
Frequency combs have become a prominent research area in optics. Of particular interest as integrate...
International audienceWe summarize our results on the generation of temporal laser cavity-solitons i...
Optical-frequency combs, that is spectra of equidistant coherent optical lines, have revolutionized ...
Passive Kerr cavities driven by coherent laser fields display a rich landscape of nonlinear physics,...
Temporal cavity solitons (CSs) are pulses of light that can persist in coherently driven passive res...
AbstractNonlinear interactions in many physical systems lead to symmetry breaking phenomena in which...
The recent study of ring quantum cascade lasers [1] , [2] (QCLs, Fig. 1a ) revealed a new laser inst...
Turing patterns and solitons are a common occurrence in systems that are out of equilibrium. For exa...
Turing patterns and solitons are a common occurrence in systems that are out of equilibrium. For exa...
Turing patterns and solitons are a common occurrence in systems that are out of equilibrium. For exa...
Temporal cavity solitons in ring microresonators provide broad and controllable generation of freque...
In many disciplines, states that emerge in open systems far from equilibrium are determined by a few...
In many disciplines, states that emerge in open systems far from equilibrium are determined by a few...
In many disciplines, states that emerge in open systems far from equilibrium are determined by a few...
Microresonator frequency combs hold promise for enabling a new class of light sources that are simul...
Frequency combs have become a prominent research area in optics. Of particular interest as integrate...
International audienceWe summarize our results on the generation of temporal laser cavity-solitons i...
Optical-frequency combs, that is spectra of equidistant coherent optical lines, have revolutionized ...
Passive Kerr cavities driven by coherent laser fields display a rich landscape of nonlinear physics,...
Temporal cavity solitons (CSs) are pulses of light that can persist in coherently driven passive res...
AbstractNonlinear interactions in many physical systems lead to symmetry breaking phenomena in which...
The recent study of ring quantum cascade lasers [1] , [2] (QCLs, Fig. 1a ) revealed a new laser inst...
Turing patterns and solitons are a common occurrence in systems that are out of equilibrium. For exa...
Turing patterns and solitons are a common occurrence in systems that are out of equilibrium. For exa...
Turing patterns and solitons are a common occurrence in systems that are out of equilibrium. For exa...
Temporal cavity solitons in ring microresonators provide broad and controllable generation of freque...
In many disciplines, states that emerge in open systems far from equilibrium are determined by a few...
In many disciplines, states that emerge in open systems far from equilibrium are determined by a few...
In many disciplines, states that emerge in open systems far from equilibrium are determined by a few...
Microresonator frequency combs hold promise for enabling a new class of light sources that are simul...