Search results for "Physics::Optics"

showing 10 items of 1958 documents

Kerr Beam Self-Cleaning in Multimode Fibers

2018

We overview recent experimental results of beam self-cleaning observed in various types of multimode fibers. We analyze the output spatial beam shapes and their connection with the refractive index profile of the fibers.

[PHYS.PHYS.PHYS-OPTICS]Physics [physics]/Physics [physics]/Optics [physics.optics]Materials scienceMulti-mode optical fiberbusiness.industrymultimode fibers; Kerr effect; optical instabilitiesPhysics::Optics02 engineering and technologyRefractive index profile021001 nanoscience & nanotechnology01 natural sciencesoptical instabilitiesmultimode fibersConnection (mathematics)010309 opticsOpticsKerr effectSelf cleaning0103 physical sciencesPhysics::Accelerator PhysicsBeam shaping0210 nano-technologybusinessRefractive indexBeam (structure)ComputingMilieux_MISCELLANEOUS
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Wavelength conversion and temporal compression of a pulse train using a dispersion oscillating fiber

2014

International audience; We demonstrate the generation of a picosecond pulse train taking advantage of the cross gain occurring in a dispersion oscillating fibre. The resulting frequency-converted signal is detuned by more than 20 nm from the pump and can be temporally compressed by a factor 2 compared to the input sinusoidal pump wave.

[PHYS.PHYS.PHYS-OPTICS]Physics [physics]/Physics [physics]/Optics [physics.optics]Materials scienceOptical fiber[ PHYS.PHYS.PHYS-OPTICS ] Physics [physics]/Physics [physics]/Optics [physics.optics]business.industryPhysics::OpticsCompression (physics)Signallaw.inventionOpticslawDispersion (optics)Pulse waveElectrical and Electronic EngineeringOptical frequency conversion; Detuned; pico-second pulseSinusoidal pumpbusinessUltrashort pulseBandwidth-limited pulse
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Discontinuity induced angular distribution of photon plasmon coupling

2011

Metal-dielectric transitions are important structures that can display a host of optical characteristics including excitation of plasmons. Metal-dielectric discontinuities can furthermore support plasmon excitation without a severe condition on the incident angle of the exciting photons. Using a semi-infinite thin gold film, we study surface plasmon (SP) excitation and the associated electromagnetic near-field distribution by recording the resulting plasmon interference patterns. In particular, we measure interference periods involving SPs at the scanable metal/air interface and the buried metal/glass one. Supported by optical near-field simulations and experiments, we demonstrate that the …

[PHYS.PHYS.PHYS-OPTICS]Physics [physics]/Physics [physics]/Optics [physics.optics]Materials sciencePhotonbusiness.industrySurface plasmonPhysics::Optics02 engineering and technology021001 nanoscience & nanotechnology01 natural sciencesSurface plasmon polaritonAtomic and Molecular Physics and OpticsOptics0103 physical sciencesNear-field scanning optical microscopeSurface plasmon resonance010306 general physics0210 nano-technologybusinessPlasmonExcitationLocalized surface plasmon
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Low drive voltage electro-optic Bragg deflector using a periodically poled lithium niobate planar waveguide

2016

International audience; An electro-optic Bragg light deflector is demonstrated in a thinned, periodically poled lithium niobate planar waveguide confined between two silica layers on a silicon substrate. More than 97% of diffraction efficiency is obtained with an operating wavelength of 633 nm for the two orthogonal light polarizations with a drive voltage of about 5 V. The temporal electric drift and the response time of the component are also studied.

[PHYS.PHYS.PHYS-OPTICS]Physics [physics]/Physics [physics]/Optics [physics.optics]Materials sciencebusiness.industryLithium niobatePhysics::Optics02 engineering and technologyCoupled mode theoryDiffraction efficiency7. Clean energyAtomic and Molecular Physics and Opticslaw.inventionWavelengthchemistry.chemical_compound020210 optoelectronics & photonicsOpticsPlanarchemistrylaw0202 electrical engineering electronic engineering information engineeringbusinessWaveguideRefractive indexVoltageOptics Letters
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Modal and wavelength conversions in plasmonic nanowires

2021

We show that plasmonic nanowire-nanoparticle systems can perform nonlinear wavelength and modal conversions and potentially serve as building blocks for signal multiplexing and novel trafficking modalities. When a surface plasmon excited by a pulsed laser beam propagates in a nanowire, it generates a localized broadband nonlinear continuum at the nanowire surface as well as at active locations defined by sites where nanoparticles are absorbed (enhancement sites). The local response may couple to new sets of propagating modes enabling a complex routing of optical signals through modal and spectral conversions. Different aspects influencing the optical signal conversions are presented, includ…

[PHYS.PHYS.PHYS-OPTICS]Physics [physics]/Physics [physics]/Optics [physics.optics]Materials sciencebusiness.industrySurface plasmonNanowirePhysics::OpticsSignalAtomic and Molecular Physics and OpticsNonlinear systemWavelengthOpticsModalBroadbandbusinessPlasmonComputingMilieux_MISCELLANEOUS
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Photo-thermal modulation of surface plasmon polariton propagation at telecommunication wavelengths

2013

International audience; We report on photo-thermal modulation of thin film surface plasmon polaritons (SPP) excited at telecom wavelengths and traveling at a gold/air interface. By operating a modulated continuous-wave or a Q-switched nanosecond pump laser, we investigate the photo-thermally induced modulation of SPP propagation mediated by the temperature-dependent ohmic losses in the gold film. We use a fiber-to-fiber characterization set-up to measure accurately the modulation depth of the SPP signal under photo-thermal excitation. On the basis of these measurements, we extract the thermo-plasmonic coefficient of the SPP mode defined as the temperature derivative of the SPP damping const…

[PHYS.PHYS.PHYS-OPTICS]Physics [physics]/Physics [physics]/Optics [physics.optics][ PHYS.PHYS.PHYS-OPTICS ] Physics [physics]/Physics [physics]/Optics [physics.optics]Materials sciencebusiness.industrySurface plasmonPhysics::Optics02 engineering and technologyLaser pumpingNanosecond021001 nanoscience & nanotechnology01 natural sciencesSurface plasmon polaritonAtomic and Molecular Physics and Optics010309 opticsAmplitude modulationWavelengthOpticsModulation0103 physical sciencesFigure of merit0210 nano-technologyTelecommunicationsbusinessOptics Express
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Spatiotemporal beam shaping in nonlinear multimode fibers

2018

Kerr beam self-cleaning in graded-index multimode fibers is accompanied by power-dependent temporal pulse reshaping. We explore the complex nonlinear dynamics with a single long pulse, where the optical power is continuously varied across its profile.

[PHYS.PHYS.PHYS-OPTICS]Physics [physics]/Physics [physics]/Optics [physics.optics]optical fibersLong pulseMaterials scienceMulti-mode optical fiberbusiness.industrynonlinear opticsnonlinear optics; optical fibers; Kerr effectPhysics::OpticsOptical power02 engineering and technology021001 nanoscience & nanotechnology01 natural sciencesPulse (physics)010309 opticsNonlinear systemOpticsKerr effect0103 physical sciencesLight beamBeam shaping0210 nano-technologybusinessBeam (structure)ComputingMilieux_MISCELLANEOUS
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Sub-Doppler Spectroscopy by Using Sodium Nanocell

2008

International audience; We present for the first time the results of the sub-Doppler spectroscopy realized with a nanocell filled with a Sodium metal. The thickness L of the gap between the windows (which determines the length of the atomic vapor column) has a wedge in the vertical direction varying from 100 to 900 nm. It is demonstrated that the use of a nanocell with the thickness L=lambda/2 and L=lambda, where lambda is the wavelength of the dye laser radiation resonant with D2 line of Sodium, allows one to provide sub-Doppler spectroscopy of the Transmission and Fluorescence spectra of D2 lines of Sodium (lambda ~ 590 nm). A cw dye laser radiation with the linewidth of ~1 MHz and tunabl…

[PHYS.QPHY]Physics [physics]/Quantum Physics [quant-ph][ PHYS.QPHY ] Physics [physics]/Quantum Physics [quant-ph]Physics::OpticsPhysics::Atomic Physics[PHYS.QPHY] Physics [physics]/Quantum Physics [quant-ph]
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Universal soliton pattern formations in passively mode-locked fiber lasers

2011

International audience; We investigate multiple-soliton pattern formations in a figure-of-eight passively mode-locked fiber laser. Operation in the anomalous dispersion regime with a double-clad fiber amplifier allows generation of up to several hundreds of solitons per round trip. We report the observation of remarkable soliton distributions: soliton gas, soliton liquid, soliton polycrystal, and soliton crystal, thus indicating the universality of such complexes.

[PHYS]Physics [physics]PhysicsHigh power lasersbusiness.industryLasersPhysics::OpticsNonlinear optics01 natural sciencesPulse propagation and temporal solitonsAtomic and Molecular Physics and OpticsSemiconductor laser theory010309 opticsNonlinear Sciences::Exactly Solvable and Integrable SystemsOpticsMode-lockingFiber laser0103 physical sciencesFiber amplifierLaser mode lockingSoliton010306 general physicsbusinessNonlinear Sciences::Pattern Formation and SolitonsfiberUltrafast lasersOptics Letters
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Production of photon states from Λ-atoms in a cavity

2019

We analyse the system of Λ-atoms in a cavity QED of semi-transparent mirror and driven by laser fields. We derive effective models and connect concepts (photonic flux, input-output operators, photonic state) characterizing the propagation of the resulting leaking photons. We propose an atom-cavity non-resonant scheme for single-and 2-photons generation. The pulse shapes of outgoing single photons are tailored using a specifically designed driving field envelope. For the production of 2-photon states, two trapped atoms are used with two driving pulses. Their pulse shapes are characterized and it is shown that the multiphoton outgoing photonic states cannot be Fock states, since the photons a…

[PHYS]Physics [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-ATOM-PH]Physics [physics]/Physics [physics]/Atomic Physics [physics.atom-ph]Physics::OpticsCavity QEDH2020 MSCA-ITN[PHYS] Physics [physics][PHYS.QPHY]Physics [physics]/Quantum Physics [quant-ph]Physics::Atomic PhysicsLIMQUET[PHYS.PHYS.PHYS-ATOM-PH] Physics [physics]/Physics [physics]/Atomic Physics [physics.atom-ph]Single Photon[PHYS.QPHY] Physics [physics]/Quantum Physics [quant-ph]
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