Dissipative Kerr solitons have paved the way to broadband and fully coherent optical frequency combs in microresonators. Here, we demonstrate numerically that slow frequency tuning of the pump laser in conjunction with phase or amplitude modulation corresponding to the free spectral range of the microresonator, provides reliable convergence of an initially excited chaotic comb state to a single dissipative Kerr soliton (DKS) state. The efficiency of this approach depends on both frequency tuning speed and modulation depth. The relevance of the proposed method is confirmed experimentally in a MgF2 microresonator. (C) 2016 Optical Society of Americ
The model, that is usually called the Lugiato-Lefever equation (LLE), was introduced in 1987 with th...
Dissipative Kerr solitons in optical microresonators combine nonlinear optical physics with photonic...
High-repetition rate microresonator-based frequency combs offer powerful and compact optical frequen...
Optical-frequency combs, that is spectra of equidistant coherent optical lines, have revolutionized ...
Temporal dissipative Kerr solitons (DKSs) in microresonators provide ultra-short optical pulses and ...
Optical frequency combs are optical sources, which spectrum consists of a series of equally spaced n...
We show theoretically and numerically that dichromatic pumping of a nonlinear microresonator by two ...
Temporal dissipative Kerr solitons in optical microresonators enable the generation of ultrashort pu...
In 2007 a new method to generate optical frequency combs was discovered. In contrast to conventional...
In this paper, we first experimentally demonstrate deterministic generation and switching of dissipa...
Kerr micro-resonator frequency combs exhibit a variety of nonlinear phenomena, most prominently the ...
Nonlinear Kerr micro-resonators have enabled fundamental breakthroughs in the understanding of diss...
Optical frequency combs based on solitons in nonlinear microresonators open up new regimes for optic...
Kerr frequency comb generation from a nonlinear high-Q resonator becomes an interdisciplinary resear...
Kerr frequency combs enable compact and robust platforms for applications such as data communication...
The model, that is usually called the Lugiato-Lefever equation (LLE), was introduced in 1987 with th...
Dissipative Kerr solitons in optical microresonators combine nonlinear optical physics with photonic...
High-repetition rate microresonator-based frequency combs offer powerful and compact optical frequen...
Optical-frequency combs, that is spectra of equidistant coherent optical lines, have revolutionized ...
Temporal dissipative Kerr solitons (DKSs) in microresonators provide ultra-short optical pulses and ...
Optical frequency combs are optical sources, which spectrum consists of a series of equally spaced n...
We show theoretically and numerically that dichromatic pumping of a nonlinear microresonator by two ...
Temporal dissipative Kerr solitons in optical microresonators enable the generation of ultrashort pu...
In 2007 a new method to generate optical frequency combs was discovered. In contrast to conventional...
In this paper, we first experimentally demonstrate deterministic generation and switching of dissipa...
Kerr micro-resonator frequency combs exhibit a variety of nonlinear phenomena, most prominently the ...
Nonlinear Kerr micro-resonators have enabled fundamental breakthroughs in the understanding of diss...
Optical frequency combs based on solitons in nonlinear microresonators open up new regimes for optic...
Kerr frequency comb generation from a nonlinear high-Q resonator becomes an interdisciplinary resear...
Kerr frequency combs enable compact and robust platforms for applications such as data communication...
The model, that is usually called the Lugiato-Lefever equation (LLE), was introduced in 1987 with th...
Dissipative Kerr solitons in optical microresonators combine nonlinear optical physics with photonic...
High-repetition rate microresonator-based frequency combs offer powerful and compact optical frequen...