Search results for "Birefringence"

showing 10 items of 133 documents

Experimental and theoretical study of the nonlinear birefringence in the formation process of vector solitons in a total polarization control ring ca…

2022

Abstract In this work, we present the numerical and experimental investigation of the polarization dynamics in a free birefringence mode-locked fiber laser. The laser includes a double-pass Erbium-doped fiber amplifier and 20-m long bi-twisted fiber at a twist rate of ± 6 turns m−1 to mitigate both, linear and circular birefringence effects. We found ellipticity changes due to nonlinear birefringence in the 20-m long fiber during pulse formation and propagation. In contrast with previously reported works, the inclusion of bi-twisted fiber allows investigate the nonlinear effects independently from the linear ones. The experimental behavior was confirmed by numerical simulations based on spl…

BirefringenceMaterials scienceVector solitonbusiness.industryPhysics::OpticsLaserPolarization (waves)Atomic and Molecular Physics and OpticsElectronic Optical and Magnetic MaterialsPulse (physics)law.inventionNonlinear systemOpticslawFiber laserFiberElectrical and Electronic EngineeringbusinessOptics & Laser Technology
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1992

Semi-IPN's of different composition, based on linear poly(methyl vinyl ether) (PVME) and crosslinked polystyrene are studied using stress and birefringence measurements in simple elongation. From quasistatic stress-strain experiments at constant T(experiment)-Tg, it can be deduced that the stress results only from the deformation of the polystyrene network, while the PVME chains do not contribute to the macroscopic stress. The concentration dependence of the network modulus is adequately described by the rubber elastic theories

BirefringenceMaterials scienceYoung's modulusMethyl vinyl etherStress (mechanics)chemistry.chemical_compoundsymbols.namesakechemistryNatural rubbervisual_artvisual_art.visual_art_mediumsymbolsGeneral Materials SciencePolystyreneComposite materialDeformation (engineering)Glass transitionAngewandte Makromolekulare Chemie
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Nonlinear mode coupling in a birefringent microstructured fiber tuned by externally applied hydrostatic pressure

2015

We studied the effect of power coupling between two linearly polarized modes, which occurs during nonlinear propagation in an externally tuned birefringent microstructured fiber. We investigated both experimentally and numerically the possibility of measuring hydrostatic pressure by tracking the nonlinear power coupling between the fiber polarization modes. We analyzed the impact of the fiber length exposed to pressure and the input polarization state on the coupling efficiency. We also revealed that the observation of nonlinear power coupling between the polarization modes is limited by linear coupling occurring in the leadthroughs to the pressure chamber. Moreover, we demonstrated that th…

BirefringenceMaterials sciencebusiness.industryLinear polarizationHydrostatic pressurePolarization-maintaining optical fiberPolarization (waves)InstabilityAtomic and Molecular Physics and OpticsElectronic Optical and Magnetic MaterialsNonlinear systemOpticsMode couplingbusinessJournal of Optics
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Optical System For Measuring The Spectral Retardance Function In An Extended Range

2016

Optical retarders are key elements for the control of the state of polarization of light, and their wavelength dependance is of great importance in a number of applications. We apply a well-known technique for determinig the spectral retardance by measuring the transmission spectra between crossed or parallel polarizers. But we we develop an optical system to perform this measurement in a wide spectral range covering the visible (VIS) and near infrared (NIR) spectrum in the range from 400 to 1600 nm. As a result we can measure the spectral retardance of different retarders and easily identify the kind of reterder (multiple order, zero-order, achromatic). We show results with tunable liquid-…

BirefringenceMaterials sciencebusiness.industryNear-infrared spectroscopy02 engineering and technologyPolarizerPhysics::Classical PhysicsPolarization (waves)01 natural sciencesAtomic and Molecular Physics and OpticsSpectral linelaw.invention010309 opticsWavelength020210 optoelectronics & photonicsOpticsAchromatic lenslaw0103 physical sciences0202 electrical engineering electronic engineering information engineeringSpectroscopybusiness
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Single-Polarization Double Refraction in Plasmonic Crystals: Considerations on Energy Flow

2014

We examined the optical properties of nanolayered metal-dielectric lattices. At subwavelength regimes, the periodic array of metallic nanofilms demonstrates nonlocality-induced double refraction, conventional positive and as well as negative. In particular, we report on energy-flow considerations concerning both refractive behaviors concurrently. Numerical simulations provide transmittance of individual beams in Ag-TiO2 metamaterials under different configurations. In regimes of the effective-medium theory predicting elliptic dispersion, negative refraction may be stronger than the expected positive refraction. This research was funded by the Spanish Ministry of Economy and Competitiveness …

BirefringenceMaterials sciencebusiness.industrySurface plasmonSurface PlasmonsMetamaterialPhysics::OpticsGeneral MedicineRefractionSubwavelength StructuresOpticsNegative refractionDispersion (optics)TransmittanceWave PropagationbusinessPlasmonÓptica
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Polarization Modulation Instability in All-Normal Dispersion Microstructured Optical Fibers with Quasi-Continuous 1064 nm Pump

2019

Polarization modulation instability (PMI) is a form of modulation instability that can exist in weakly birefringent optical fibers [1]. Sidebands can be generated by this effect when a polarization mode of the birefringent fiber is excited with an intense optical pump. The polarization state of the sidebands is orthogonal to the polarization of the pump signal. PMI has been observed in microstructured optical fibers (MOFs). PMI was reported in a large-air-filling fraction MOF that was pumped in the normal dispersion regime with visible light [2]. The coherent degradation of femtosecond supercontinuum light generated in all-normal dispersion (ANDi) MOFs due to PMI was recently investigated […

BirefringenceOptical fiberMaterials sciencebusiness.industryComputer Science::Information RetrievalPhysics::OpticsComputer Science::Computation and Language (Computational Linguistics and Natural Language and Speech Processing)Polarization (waves)Supercontinuumlaw.inventionOptical pumpinglawPicosecondExcited stateFemtosecondOptoelectronicsbusiness2019 Conference on Lasers and Electro-Optics Europe & European Quantum Electronics Conference (CLEO/Europe-EQEC)
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Dissipation of post-pulse laser-induced alignment of CO2through collisions with Ar

2015

In this paper, laser-induced field-free alignment of CO2 in mixtures with Ar is investigated under dissipative conditions (up to 15 bars) at room temperature. The degree of alignment is temporally monitored by a polarization spectroscopy technique, where a weak probe pulse measures the transient birefringence resulting from the alignment. The data are analyzed with a quantum mechanical density matrix formalism using properly J-dependent and M-dependent state-to-state transfer rates, which was previously successfully tested on pure CO2 and CO2–He mixtures. The same consistency is obtained between experiments and calculations, in particular the decay times of both the transient revivals and t…

Birefringencebusiness.industryChemistryDissipationPolarization (waves)Molecular physicssymbols.namesakeOpticsDissipative systemsymbolsGeneral Materials SciencebusinessRaman spectroscopySpectroscopyFemtochemistryQuantumSpectroscopyJournal of Raman Spectroscopy
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Vers le contrôle de l'alignement et de l'orientation : théorie et expérience

2010

This thesis is about the control and characterisation of the alignment and orientation of molecules by ultra short laser pulses on a theoretical and experimental approach. Alignment corresponds to a symmetric angular distribution of the molecular axis peaked along the laser field axis, whereas orientation provides an asymmetric distribution favouring one spatial direction. Orientation by sudden two-colour (2+1) pulses is studied extensively for the non resonant case and conditions required for achieving significant orientation are explored. A second two-colour scheme, where the second harmonic is in quasi resonance with a vibrational level of the molecule, is also presented and discussed. T…

BiréfringenceChamp bi couleurNO moleculeMolécule N2Impulsions laser ultracourtesUltra short laserSingle-shot detection[PHYS.COND.CM-GEN] Physics [physics]/Condensed Matter [cond-mat]/Other [cond-mat.other]PolarizabilityExcitation rovibrationnelleN2 moleculeMoment angulaireBirefringenceOrientation moléculaireMolecular alignmentRotational wave packetAlignement moléculaireAngular momentum[ PHYS.COND.CM-GEN ] Physics [physics]/Condensed Matter [cond-mat]/Other [cond-mat.other]CO2 moleculeMolecular orientationPhase controlTwo-colour fieldPolarisabilitéHyperpolarizability[PHYS.COND.CM-GEN]Physics [physics]/Condensed Matter [cond-mat]/Other [cond-mat.other]Molécule NOHyperpolarisabilitéRovibrational excitationPaquet d'ondes rotationnellesControl cohérentCoherent controlMolécule CO2Interférences
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Optical and dielectric properties of MoO 3 nanosheets for van der Waals heterostructures

2021

Two-dimensional (2D) insulators are a key element in the design and fabrication of van der Waals heterostructures. They are vital as transparent dielectric spacers whose thickness can influence both the photonic, electronic, and optoelectronic properties of 2D devices. Simultaneously, they provide protection of the active layers in the heterostructure. For these critical roles, hexagonal Boron Nitride (hBN) is the dominant choice due to its large bandgap, atomic flatness, low defect density, and encapsulation properties. However, the broad catalogue of 2D insulators offers exciting opportunities to replace hBN in certain applications that require transparent thin layers with additional opti…

Condensed Matter - Materials ScienceBirefringenceMaterials scienceThin layersPhysics and Astronomy (miscellaneous)Band gapbusiness.industryPhysics::OpticsMaterials Science (cond-mat.mtrl-sci)FOS: Physical sciencesHeterojunctionPhysics - Applied PhysicsDielectricApplied Physics (physics.app-ph)Condensed Matter::Materials ScienceSemiconductorOptoelectronicsPhotonicsbusinessRefractive indexApplied Physics Letters
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Dispersive optical interface based on nanofiber-trapped atoms.

2011

We dispersively interface an ensemble of one thousand atoms trapped in the evanescent field surrounding a tapered optical nanofiber. This method relies on the azimuthally-asymmetric coupling of the ensemble with the evanescent field of an off-resonant probe beam, transmitted through the nanofiber. The resulting birefringence and dispersion are significant; we observe a phase shift per atom of $\sim$\,1\,mrad at a detuning of six times the natural linewidth, corresponding to an effective resonant optical density per atom of 0.027. Moreover, we utilize this strong dispersion to non-destructively determine the number of atoms.

Condensed Matter::Quantum GasesQuantum PhysicsBirefringenceMaterials scienceAtomic Physics (physics.atom-ph)General Physics and AstronomyFOS: Physical sciencesPhysics::OpticsOptical densityCoupling (probability)Physics - Atomic PhysicsLaser linewidthNanofiberAtomDispersion (optics)Physics::Atomic PhysicsAtomic physicsQuantum Physics (quant-ph)Beam (structure)Optics (physics.optics)Physics - OpticsPhysical review letters
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