Nonlinear wave mixing in optical microresonators new perospects for compact optical frequency combs with many promising applications. We demonstrate simultaneous generation of multiple frequency combs from a single optical microresonator and a single continuous-wave laser. Similar to space-division multiplexing, we generate several dissipative Kerr soliton states circulating solitonic pulses driven by a continuous-wave laser in different spatial (or polarization) modes of a MgF2 microresonator. Up to three distinct combs are produced simultaneously, featuring excellent mutual coherence and substantial repetition rate differences, useful for fast acquisition and efficient rejection of soliton intermodulation products. This method could enabl...
The single soliton propagating in a microresonator (MRR) is characterized by a smooth spectrum. Howe...
Soliton microcombs are helping to advance the miniaturization of a range of comb systems. These comb...
The formation of temporal dissipative solitons in optical microresonators enables compact, high-repe...
We simultaneously create stable solitons in up to three distinct mode families of a single crystalli...
Optical-frequency combs, that is spectra of equidistant coherent optical lines, have revolutionized ...
In 2007 a new method to generate optical frequency combs was discovered. In contrast to conventional...
Recent works on Kerr frequency combs demonstrated the possibility to simultaneously generate multipl...
<p> Based on the normalized spatiotemporal Lugiato-Lefever equation, the evolutions of cosine-modul...
Optical frequency combs are optical sources, which spectrum consists of a series of equally spaced n...
Kerr frequency comb generation from a nonlinear high-Q resonator becomes an interdisciplinary resear...
Temporal dissipative Kerr solitons in optical microresonators enable the generation of ultrashort pu...
Broadband optical frequency combs are extremely versatile tools for precision spectroscopy, ultrafas...
We experimentally demonstrate that a single microresonator can emit two orthogonally polarized indiv...
A study is made of the nonlinear dynamics of bichromatically pumped microresonator Kerr frequency co...
Optical frequency combs based on solitons in nonlinear microresonators open up new regimes for optic...
The single soliton propagating in a microresonator (MRR) is characterized by a smooth spectrum. Howe...
Soliton microcombs are helping to advance the miniaturization of a range of comb systems. These comb...
The formation of temporal dissipative solitons in optical microresonators enables compact, high-repe...
We simultaneously create stable solitons in up to three distinct mode families of a single crystalli...
Optical-frequency combs, that is spectra of equidistant coherent optical lines, have revolutionized ...
In 2007 a new method to generate optical frequency combs was discovered. In contrast to conventional...
Recent works on Kerr frequency combs demonstrated the possibility to simultaneously generate multipl...
<p> Based on the normalized spatiotemporal Lugiato-Lefever equation, the evolutions of cosine-modul...
Optical frequency combs are optical sources, which spectrum consists of a series of equally spaced n...
Kerr frequency comb generation from a nonlinear high-Q resonator becomes an interdisciplinary resear...
Temporal dissipative Kerr solitons in optical microresonators enable the generation of ultrashort pu...
Broadband optical frequency combs are extremely versatile tools for precision spectroscopy, ultrafas...
We experimentally demonstrate that a single microresonator can emit two orthogonally polarized indiv...
A study is made of the nonlinear dynamics of bichromatically pumped microresonator Kerr frequency co...
Optical frequency combs based on solitons in nonlinear microresonators open up new regimes for optic...
The single soliton propagating in a microresonator (MRR) is characterized by a smooth spectrum. Howe...
Soliton microcombs are helping to advance the miniaturization of a range of comb systems. These comb...
The formation of temporal dissipative solitons in optical microresonators enables compact, high-repe...