Continuous wave driving elucidates the desynchronisation dynamics of ultrashort dissipative Raman solitons generated in dispersive Kerr resonators

Fuente: arXiv
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Autori principali: Li, Zongda, Xu, Yiqing, Coen, Stéphane, Murdoch, Stuart G., Erkintalo, Miro
Natura: Preprint
Pubblicazione: 2024
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author Li, Zongda
Xu, Yiqing
Coen, Stéphane
Murdoch, Stuart G.
Erkintalo, Miro
author_facet Li, Zongda
Xu, Yiqing
Coen, Stéphane
Murdoch, Stuart G.
Erkintalo, Miro
contents Phase-coherent pulsed driving of passive optical fiber resonators enable the generation of ultrashort dissipative Raman solitons with durations well below 100~fs. The existence and characteristics of such solitons critically depends on the desynchronisation between the pulsed driving source and the resonator roundtrip time, yet the full mechanism through which these dependencies arise remains unclear. Here, we numerically demonstrate that Raman solitons can exist even under conditions of continuous wave driving, and by numerically examining the existence and characteristics of Raman solitons under such conditions, we elucidate the role of desynchronisation in pulse-driven systems. In addition to providing new insights on the existence and characteristics of ultrashort Raman solitons, our analysis yields a qualitative explanation for the range of desynchronisations over which the solitons can exist.
format Preprint
id arxiv_https___arxiv_org_abs_2405_12425
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Continuous wave driving elucidates the desynchronisation dynamics of ultrashort dissipative Raman solitons generated in dispersive Kerr resonators
Li, Zongda
Xu, Yiqing
Coen, Stéphane
Murdoch, Stuart G.
Erkintalo, Miro
Optics
Phase-coherent pulsed driving of passive optical fiber resonators enable the generation of ultrashort dissipative Raman solitons with durations well below 100~fs. The existence and characteristics of such solitons critically depends on the desynchronisation between the pulsed driving source and the resonator roundtrip time, yet the full mechanism through which these dependencies arise remains unclear. Here, we numerically demonstrate that Raman solitons can exist even under conditions of continuous wave driving, and by numerically examining the existence and characteristics of Raman solitons under such conditions, we elucidate the role of desynchronisation in pulse-driven systems. In addition to providing new insights on the existence and characteristics of ultrashort Raman solitons, our analysis yields a qualitative explanation for the range of desynchronisations over which the solitons can exist.
title Continuous wave driving elucidates the desynchronisation dynamics of ultrashort dissipative Raman solitons generated in dispersive Kerr resonators
topic Optics
url https://arxiv.org/abs/2405.12425