Temporal cavity solitons in a delayed model of a dispersive cavity ring laser

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Date
2020
Volume
15
Issue
Journal
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Publisher
Les Ulis : EDP Sciences
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Abstract

Nonlinear localised structures appear as solitary states in systems with multistability and hysteresis. In particular, localised structures of light known as temporal cavity solitons were observed recently experimentally in driven Kerr-cavities operating in the anomalous dispersion regime when one of the two bistable spatially homogeneous steady states exhibits a modulational instability. We use a distributed delay system to study theoretically the formation of temporal cavity solitons in an optically injected ring semiconductor-based fiber laser, and propose an approach to derive reduced delay-differential equation models taking into account the dispersion of the intracavity fiber delay line. Using these equations we perform the stability and bifurcation analysis of injection-locked continuous wave states and temporal cavity solitons.

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Keywords
Chromatic dispersion, Large delay, Semiconductor laser, Temporal cavity solitons, Time-delay model
Citation
Pimenov, A., Amiranashvili, S., & Vladimirov, A. G. (2020). Temporal cavity solitons in a delayed model of a dispersive cavity ring laser. 15. https://doi.org//10.1051/mmnp/2019054
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CC BY 4.0 Unported