Search results for "Supercontinuum"

showing 10 items of 128 documents

Coherent and incoherent spectral broadening in a photonic crystal fiber.

2007

The coherence of the spectral broadening process is the key requisite for the application of supercontinua in frequency combs. We investigate the coherence of two subsequent supercontinuum pulses created in a photonic crystal fiber pumped by a femtosecond laser. We measure Young interference fringes from a Michelson-type interferometer at different wavelengths of the output spectrum and analyze their dependence on pump intensity and polarization. The visibility of these fringes is a direct measure of the coherence of the spectral broadening processes.

PhysicsOptical fiberbusiness.industryPhysics::OpticsLaserAtomic and Molecular Physics and Opticslaw.inventionSupercontinuumCoherence lengthInterferometryOpticslawOptoelectronicsbusinessPhotonic-crystal fiberDoppler broadeningPhotonic crystalOptics letters
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Polychromatic Cherenkov radiation and supercontinuum in tapered optical fibers

2012

We numerically demonstrate that bright solitons in tapered optical fibers can emit polychromatic Cherenkov radiation providing they remain spectrally close to the zero dispersion wavelength during propagation along the fiber. The prime role in this phenomenon is played by the soliton self-frequency shift driving efficiency of the radiation and tuning of its frequency. Depending on tapering and input pulse power, the radiation is emitted either as a train of pulses at different frequencies or as a single temporally broad and strongly chirped pulse.

PhysicsOptical fiberbusiness.industryPhysics::OpticsStatistical and Nonlinear PhysicsRadiationAtomic and Molecular Physics and Opticslaw.inventionSupercontinuumPulse (physics)Zero-dispersion wavelengthOpticsRadiation pressurelawPulse compressionOptoelectronicsbusinessCherenkov radiationJournal of the Optical Society of America B
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Unified description of dispersive wave emission in normal and anomalous dispersion regimes

2016

We present a novel theoretical framework where dispersive wave emission in normal and anomalous dispersion is interpreted based on four-wave mixing processes. It is a powerful tool for designing supercontinuum sources along analytical guidelines.

PhysicsQuantum mechanicsPhysical opticsMixing (physics)SupercontinuumComputational physicsPhotonics and Fiber Technology 2016 (ACOFT, BGPP, NP)
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Supercontinuum generation in silicon waveguides relying on wave-breaking

2015

Four-wave-mixing processes enabled during optical wave-breaking (OWB) are exploited in this paper for supercontinuum generation. Unlike conventional approaches based on OWB, phase-matching is achieved here for these nonlinear interactions, and, consequently, new frequency production becomes more efficient. We take advantage of this kind of pulse propagation to obtain numerically a coherent octave-spanning mid-infrared supercontinuum generation in a silicon waveguide pumping at telecom wavelengths in the normal dispersion regime. This scheme shows a feasible path to overcome limits imposed by two-photon absorption on spectral broadening in silicon waveguides.

PhysicsSiliconbusiness.industryPhysics::Opticschemistry.chemical_elementÒpticaAtomic and Molecular Physics and OpticsSupercontinuumlaw.inventionOpticschemistryPulse compressionlawDispersion (optics)businessSelf-phase modulationWaveguidePhotonic-crystal fiberDoppler broadeningOptics Express
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Truncated thermalization of incoherent optical waves through supercontinuum generation in photonic crystal fibers

2013

We revisit the process of optical wave thermalization through supercontinuum generation in photonic crystal fibers. We report theoretically and numerically a phenomenon of `truncated thermalization': The incoherent optical wave exhibits an irreversible evolution toward a Rayleigh-Jeans thermodynamic equilibrium state characterized by a compactly supported spectral shape. The theory then reveals the existence of a frequency cut-off which regularizes the ultraviolet catastrophe inherent to ensembles of classical nonlinear waves. This phenomenon sheds new light on the mechanisms underlying the formation of bounded supercontinuum spectra in photonic crystal fibers.

PhysicsSpectral shape analysisbusiness.industryThermodynamic equilibriumComputerSystemsOrganization_COMPUTER-COMMUNICATIONNETWORKSPhysics::Optics01 natural sciencesMolecular physicsAtomic and Molecular Physics and OpticsSpectral lineSupercontinuum010309 optics[MATH.MATH-PR]Mathematics [math]/Probability [math.PR]Nonlinear systemThermalisationOptics0103 physical sciences010306 general physicsbusinessGeneralLiterature_REFERENCE(e.g.dictionariesencyclopediasglossaries)[ MATH.MATH-PR ] Mathematics [math]/Probability [math.PR]ComputingMilieux_MISCELLANEOUSUltraviolet catastrophePhotonic-crystal fiberMathematicsofComputing_DISCRETEMATHEMATICS
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Introduction to Wave Turbulence Formalisms for Incoherent Optical Waves

2016

We provide an introduction to different wave turbulence formalisms describing the propagation of partially incoherent optical waves in nonlinear media. We consider the nonlinear Schrodinger equation as a representative model accounting for a nonlocal or a noninstantaneous nonlinearity, as well as higher-order dispersion effects. We discuss the wave turbulence kinetic equation describing, e.g., wave condensation or wave thermalization through supercontinuum generation; the Vlasov formalism describing incoherent modulational instabilities and the formation of large scale incoherent localized structures in analogy with long-range gravitational systems; and the weak Langmuir turbulence formalis…

PhysicsTurbulenceLangmuir TurbulenceWave turbulenceVlasov equationIncoherent scatter01 natural sciencesSupercontinuum010309 opticssymbols.namesakeNonlinear systemQuantum electrodynamics0103 physical sciencessymbols010306 general physicsNonlinear Schrödinger equation
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Optical rogue waves: Physics and impact

2011

International audience; We review our recent work in the field of optical rogue wave physics and applications. Beginning from a brief survey of the well-known instabilities in optical fiber supercontinuum generation, we trace the links to recent developments in studying the emergence of high contrast localized breather structures in both spontaneous and induced nonlinear instabilities. We also discuss the precise nature of optical rogue wave statistics and examine the dynamics leading to the formation of extreme events in the context of noise-driven supercontinuum generation.

Physics[PHYS.PHYS.PHYS-OPTICS] Physics [physics]/Physics [physics]/Optics [physics.optics]High contrast[PHYS.PHYS.PHYS-OPTICS]Physics [physics]/Physics [physics]/Optics [physics.optics]Optical fiber[ PHYS.PHYS.PHYS-OPTICS ] Physics [physics]/Physics [physics]/Optics [physics.optics]Field (physics)Breatherbusiness.industryOptical rogue wavesPhysics::OpticsContext (language use)01 natural sciences010305 fluids & plasmaslaw.inventionSupercontinuumOpticslaw0103 physical sciencesRogue wave010306 general physicsbusinessNonlinear Sciences::Pattern Formation and Solitons
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Kerr frequency comb generation in the normal dispersion regime of dispersion oscillating telecom fiber

2013

The generation of optical frequency combs has a variety of applications from optical metrology to spectroscopy and wavelength division multiplexing. Nonlinear methods to generate frequency combs are based on multiple four-wave mixing (FWM) in highly nonlinear waveguides [1]. The mechanism for the generation of a wideband comb from a CW pump is Kerr-induced phase-matching of the FWM interaction or modulation instability (MI), which requires operating in the anomalous dispersion regime. Such restriction can be circumvented with a cavity geometry, where MI [2] and comb generation [3] may also be observed in the normal dispersion region. Alternatively, one may obtain MI and unequally spaced Ker…

Physics[PHYS.PHYS.PHYS-OPTICS] Physics [physics]/Physics [physics]/Optics [physics.optics][PHYS.PHYS.PHYS-OPTICS]Physics [physics]/Physics [physics]/Optics [physics.optics]Kerr effect[ PHYS.PHYS.PHYS-OPTICS ] Physics [physics]/Physics [physics]/Optics [physics.optics]business.industryPhysics::OpticsNonlinear optics01 natural sciencesSupercontinuum010309 opticsOptical pumpingFrequency combOpticsWavelength-division multiplexing0103 physical sciencesDispersion (optics)Optoelectronics010306 general physicsTelecommunicationsbusinessComputingMilieux_MISCELLANEOUSPhotonic-crystal fiber
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Universal spectral dynamics of modulation instability : theory, simulation, experiment

2011

A central process of nonlinear fibre optics is modulation instability (MI), where weak perturbations on a continuous wave are amplified to generate a parametric cascade of spectral sidebands. Although studied for many years, it has only been recently appreciated that MI dynamics can be described analytically by Akhmediev breather (AB) solutions to the nonlinear Schrodinger equation (NLSE) [1]. This has led to important results, including the first observation of the Peregrine Soliton [2]. AB theory has also shown that the spectral amplitudes at the peak of the MI gain curve yield a characteristic log-triangular spectrum, providing new insight into the initial phase of supercontinuum generat…

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]Breather01 natural sciencesInstabilitySupercontinuumSchrödinger equation010309 opticssymbols.namesakeCascadeQuantum mechanics0103 physical sciencesModulation (music)symbolsPeregrine solitonStatistical physics010306 general physicsNonlinear Schrödinger equation
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Double-seed stabilization of a continuum generated from fourth-order modulation instability

2013

Summary form only given. Modulation instability (MI) is a ubiquitous process in which a weak field is exponentially amplified through a balance between dispersive and nonlinear effects. In single-mode scalar optical fibers, the positive Kerr nonlinearity phase-mismatch can be compensated by anomalous second-order dispersion, a process known as MI2. But phase-matched solutions can also exist in normal second-order dispersion region, thanks to negative even higher-order terms [1]. This process, that we label MI4, gives rise to a pair of narrow sidebands widely detuned far from the pump. MI may grow spontaneously from broadband noise and is usually the main process involved in the early stages…

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]Sidebandbusiness.industryOptical rogue wavesSoliton (optics)02 engineering and technologyStatistical fluctuations01 natural sciencesSupercontinuumComputational physics010309 opticssymbols.namesake020210 optoelectronics & photonicsOptics0103 physical sciencesDispersion (optics)0202 electrical engineering electronic engineering information engineeringsymbolsbusinessNonlinear Schrödinger equationComputingMilieux_MISCELLANEOUSPhotonic-crystal fiber
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