Search results for "Mode-locking"

showing 10 items of 60 documents

Nonlinear dynamics of temporal optical soliton molecules in lasers

2007

Recent experiments demonstrate that fiber laser cavities are able to support various multisoliton complexes, analogous to soliton molecules. These advances, which could have impact on optical information transmission or storage, are guided by the concept of dissipative soliton and supported by numerical simulations. DOI: 10.2529/PIERS060828120520 As passively mode-locked lasers rely strongly on nonlinear dissipation, there is a growing interest in understanding various pulse dynamics in terms of the dynamics of dissipative solitons [1]. In particular, the interaction between dissipative temporal solitons can lead to the formation of stable multi-soliton complexes. The stability of multi-sol…

Physics[PHYS.PHYS.PHYS-OPTICS] Physics [physics]/Physics [physics]/Optics [physics.optics][PHYS.PHYS.PHYS-OPTICS]Physics [physics]/Physics [physics]/Optics [physics.optics][ PHYS.PHYS.PHYS-OPTICS ] Physics [physics]/Physics [physics]/Optics [physics.optics]Condensed matter physicsPhysics::OpticsLaser01 natural scienceslaw.invention010309 opticsDissipative solitonMode-lockinglawFiber laserOptical cavity0103 physical sciencesDispersion (optics)SolitonAtomic physics010306 general physicsUltrashort pulseComputingMilieux_MISCELLANEOUS
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All-Fibered High-Quality 20-GHz and 40-GHz Picosecond Pulse Generator

2011

International audience; In this work, we investigate the generation of 20 and 40 GHz pulse trains by nonlinear compression of an initial beating in a cavity-less optical-fiber-based configuration. High temporal stability is obtained by generating the sinusoidal beating by means of an intensity modulator driven by an external clock. The residual timing jitter induced by the RF phase modulation is then reduced by managing the cumulated dispersion of the compression line whereas complete polarization stabilization is obtained thanks to a modified setup including a Faraday rotator mirror. Finally a high-quality 160 Gbit/s signal is generated from our low duty-cycle 40 GHz pulse source thanks to…

Physics[PHYS.PHYS.PHYS-OPTICS] Physics [physics]/Physics [physics]/Optics [physics.optics][PHYS.PHYS.PHYS-OPTICS]Physics [physics]/Physics [physics]/Optics [physics.optics][ PHYS.PHYS.PHYS-OPTICS ] Physics [physics]/Physics [physics]/Optics [physics.optics]business.industry02 engineering and technologyOptical modulation amplitudelaw.invention020210 optoelectronics & photonicsOpticsMode-lockinglaw0202 electrical engineering electronic engineering information engineeringOptoelectronicsFaraday rotatorbusinessIntensity modulationUltrashort pulsePhase modulationBandwidth-limited pulseJitter
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Complexes and Molecules of Dissipative Solitons in Mode-Locked Lasers

2009

Pulse-pulse interaction is a major issue in the development of high-repetition rate fiber laser sources or soliton-based optical transmission lines. The design of a suitable level of nonlinear dissipation, through nonlinear filters or saturable absorbers for instance, is able to improve significantly the stability of multiple pulse operation. The concept of a dissipative soliton has become an important tool for the exploration and the analysis of the multiple pulse dynamics, with mode-locked lasers and regenerated transmission lines as important applications [1,2]. Above all, the study of dissipative solitons has become a fertile area of nonlinear science with multidisciplinary implications…

Physics[PHYS.PHYS.PHYS-OPTICS] Physics [physics]/Physics [physics]/Optics [physics.optics][PHYS.PHYS.PHYS-OPTICS]Physics [physics]/Physics [physics]/Optics [physics.optics][ PHYS.PHYS.PHYS-OPTICS ] Physics [physics]/Physics [physics]/Optics [physics.optics]business.industryLaser01 natural sciences010305 fluids & plasmaslaw.inventionNonlinear systemDissipative solitonElectric power transmissionMode-lockinglawFiber laserQuantum mechanics0103 physical sciencesDissipative systemOptoelectronicsSoliton010306 general physicsbusinessComputingMilieux_MISCELLANEOUS
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Dissipative Optical Breather Molecular Complexes

2020

We demonstrate different types of breathing soliton complexes in a mode-locked fibre laser: multi-breather molecules, and molecular complexes arising from the binding of two breather-pair molecules or a breather-pair molecule and a single breather.

Physics[PHYS.PHYS.PHYS-OPTICS]Physics [physics]/Physics [physics]/Optics [physics.optics]BreatherCross-phase modulationSoliton (optics)02 engineering and technology021001 nanoscience & nanotechnology01 natural sciencesMolecular physicssymbols.namesakeFourier transformNonlinear Sciences::Exactly Solvable and Integrable SystemsMode-lockingFiber laser0103 physical sciencesDissipative systemsymbolsMoleculePhysics::Chemical Physics010306 general physics0210 nano-technologyNonlinear Sciences::Pattern Formation and SolitonsComputingMilieux_MISCELLANEOUS
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Vibrating soliton pairs in a mode-locked laser cavity

2006

International audience; We show numerically the existence of vibrating soliton pairs that are consistent with observations performed with a passively mode-locked fiber laser. These vibrating pairs are new types of multisoliton complexes that exist in the vicinity of the phase-locked soliton pairs discovered a few years ago [Opt. Lett. 27, 966 (2002)]. The pairs are found numerically with a laser propagation model that includes nonlinear dissipation and cavity periodicity, and they can appear following a Hopf-type bifurcation when a cavity parameter is tuned.

Physics[PHYS.PHYS.PHYS-OPTICS]Physics [physics]/Physics [physics]/Optics [physics.optics][ PHYS.PHYS.PHYS-OPTICS ] Physics [physics]/Physics [physics]/Optics [physics.optics]business.industryNonlinear opticsPhysics::OpticsLaserNonlinear dissipationPolarization (waves)01 natural sciencesAtomic and Molecular Physics and Opticslaw.invention010309 opticsOpticsMode-lockinglawFiber laserOptical cavity0103 physical sciences010306 general physicsbusinessNonlinear Sciences::Pattern Formation and SolitonsBifurcation
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Manipulating dissipative soliton ensembles in passively mode-locked fiber lasers

2014

International audience; We review our recent experimental and theoretical results addressing the dynamics of large numbers of solitons interacting in presence of a background in passively mode-locked erbium-doped fiber lasers. We first characterize experimentally the soliton rain complex dynamics, and then we focus on ordered soliton patterns. We report that, for suitable experimental parameters, a continuous wave can impose harmonic mode locking. Two levels of modeling for a mode-locked laser subjected to the external injection of a continuous wave are developed to support the latter observation. The first one is based on a scalar master equation, while the second one takes into account th…

Physics[PHYS]Physics [physics]Ultrashort pulseMode-lockingAtomic and Molecular Physics and OpticsElectronic Optical and Magnetic MaterialsDissipative solitonComplex dynamicsfiber laserClassical mechanicsMode-lockingControl and Systems EngineeringQuantum mechanicsFiber laserMaster equationHarmonicContinuous waveOptical injectionSolitonElectrical and Electronic EngineeringInstrumentationsoliton
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Statistical description of soliton clustering in fiber lasers with slow-gain dynamics

2014

We demonstrate theoretically that the dynamic clustering of solitons observed in a variety of experiments are due to the initial phase and position of interacting solitons with the slow gain dynamics of the fiber laser.

Physicsbusiness.industryDynamics (mechanics)Physics::OpticsLaserlaw.inventionNonlinear Sciences::Exactly Solvable and Integrable SystemsOpticsMode-lockingPosition (vector)lawFiber laserSolitonStatistical physicsbusinessCluster analysisNonlinear Sciences::Pattern Formation and SolitonsTunable laserAdvanced Photonics
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Impact of slow gain dynamics on soliton molecules in mode-locked fiber lasers

2012

International audience; We theoretically demonstrate and experimentally confirm the major influence of gain dynamics on soliton molecules that self-assemble in mode-locked lasers. Both slow gain recovery and depletion play a pivotal role in the formation of chirped soliton molecules characterized by an increasing separation from leading to trailing pulses. These chirped molecules actually consist of many pulses and may be termed macromolecules. They are experimentally observed in a fiber laser and numerically modeled by an approach that properly includes the slow gain dynamics. Furthermore, it is shown that these processes stabilize soliton trains in fiber lasers by inhibiting internal osci…

Physicsbusiness.industryPHASEDynamics (mechanics)educationMode (statistics)Physics::OpticsSoliton (optics)Laser01 natural sciencesAtomic and Molecular Physics and Opticslaw.invention010309 opticsOpticsMode-lockinglawFiber laserTemporal resolution0103 physical sciencesMolecule010306 general physicsbusinessNonlinear Sciences::Pattern Formation and Solitons
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Soliton pairs in a fiber laser: From anomalous to normal average dispersion regime

2003

We report the observation of self phase-locked pulse pairs in a stretched-pulse fiber laser operating in the normal path-averaged dispersion regime. Numerical simulations agree with our experimental results. More insight is provided with a numerical comparison between intracavity profiles of pulse pairs in anomalous and in normal dispersion regimes. © 2003 Optical Society of America.

Physicsbusiness.industryPhysics::OpticsSoliton (optics)LaserAtomic and Molecular Physics and Opticslaw.inventionPulse (physics)OpticsMode-lockinglawFiber laserDispersion (optics)Dispersion-shifted fiberbusinessBandwidth-limited pulse
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Vibrations and oscillations of tri-soliton molecules in a mode-locked fiber laser

2018

We present numerical simulations highlighting internal oscillations and vibrations within tri-soliton molecules generated by a mode-locked fiber laser. We highlight major qualitative differences as compared to two-soliton molecules.

VibrationPhysicsNonlinear Sciences::Exactly Solvable and Integrable SystemsComputer simulationMode-lockingFiber laserMoleculeSoliton (optics)Physics::Chemical PhysicsNonlinear Sciences::Pattern Formation and SolitonsMolecular physicsAdvanced Photonics 2018 (BGPP, IPR, NP, NOMA, Sensors, Networks, SPPCom, SOF)
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