Influence of time-delayed feedback on the dynamics of temporal localized structures in passively mode-locked semiconductor lasers
arXiv:2110.08034 · doi:10.1063/5.0075449
Abstract
In this paper, we analyze the effect of optical feedback on the dynamics of a passively mode-locked ring laser operating in the regime of temporal localized structures. This laser system is modeled by a system of delay differential equations, which include delay terms associated with the laser cavity and the feedback loop. Using a combination of direct numerical simulations and path-continuation techniques, we show that the feedback loop creates echos of the main pulse whose position and size strongly depend on the feedback parameters. We demonstrate that in the long-cavity regime, these echos can successively replace the main pulses, which defines their lifetime. This pulse instability mechanism originates from a global bifurcation of the saddle-node infinite-period type. In addition, we show that, under the influence of noise, the stable pulses exhibit forms of behavior characteristic of excitable systems. Furthermore, for the harmonic solutions consisting of multiple equispaced pulses per round-trip we show that if the location of the pulses coincide with the echo of another, the range of stability of these solutions is increased. Finally, it is shown that around these resonances, branches of different solutions are connected by period doubling bifurcations.
9 pages, 11 figures, published in "Chaos: An Interdisciplinary Journal of Nonlinear Science"
References in corpus (4)
- Topological solitons as addressable phase bits in a driven laser
- Electrical Addressing and Temporal Tweezing of Localized Pulses in Passively Mode-Locked Semiconductor Lasers
- Spatio-temporal representation of long-delayed systems: an alternative approach
- Influence of optical feedback on harmonic pulsating solutions of long-cavity mode-locked VECSELs
Cited by in corpus (3)
- Merging and disconnecting resonance tongues in a pulsing excitable microlaser with delayed optical feedback
- Influence of noise-induced modulations on the timing stability of passively mode-locked semiconductor laser subject to optical feedback
- Coherent pulse interactions in mode-locked semiconductor lasers