Dynamics of platicons due to third-order dispersion
arXiv:1710.05641 · doi:10.1140/epjd/e2017-80148-0
Abstract
Dynamics of platicons caused by the third-order dispersion is studied. It is shown that under the influence of the third-order dispersion platicons obtain angular velocity depending both on dispersion and on detuning value. A method of tuning of platicon associated optical frequency comb repetition rate is proposed.
11 pages, 5 figures
References in corpus (6)
- Microresonator Soliton Dual-Comb Spectroscopy
- Frequency combs and platicons in optical microresonators with normal GVD
- Mode-locked ultrashort pulse generation from on-chip normal dispersion microresonators
- Generation of a coherent near-infrared Kerr frequency comb in a monolithic microresonator with normal GVD
- Dynamics of mode-coupling-induced microresonator frequency combs in normal dispersion
- Dispersion engineering of high-Q silicon microresonators via thermal oxidation
Cited by in corpus (5)
- Modulational instability and frequency combs in WGM microresonators with backscattering
- Generation and dynamics of solitonic pulses due to pump amplitude modulation at normal group velocity dispersion
- Numerical study of solitonic pulse generation in the self-injection locking regime at normal and anomalous group velocity dispersion
- Two-color flat-top solitonic pulses in optical microresonators via second harmonic generation
- Two-color flat-top solitons in microresonator-based optical parametric oscillators