arXiv · 1906.02245
Generation and dynamics of solitonic pulses due to pump amplitude modulation at normal group velocity dispersion
Abstract
We studied generation and dynamics of solitonic pulses, platicons, at normal group velocity dispersion due to the pump amplitude modulation. We proposed, that if the required frequency of amplitude modulation is too large for available modulators, it is possible to use subharmonic phase modulation for platicon generation. It was also demonstrated that it is possible to control the repetition rate of platicons by tuning modulation frequency. Tuning range for platicons was found to be much wider than for bright solitons. We also studied the influence of the high-order dispersion on platicon properties. It was shown that both third-order dispersion and pump modulation govern platicon dynamics making it quite different from dynamics of dissipative Kerr solitons. Third-order dispersion was also shown to affect significantly the optimal conditions for the platicon generation and repetition rate tuning range.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Valery E. Lobanov, Nikita M. Kondratiev, Artem E. Shitikov, Ramzil R. Galiev, Igor A. Bilenko. 2019-06-05. Generation and dynamics of solitonic pulses due to pump amplitude modulation at normal group velocity dispersion. https://doi.org/10.1103/physreva.100.013807
Cite the original work for its findings. Save a collection to share your selection of sources.