Search results for "Dispersion"

showing 10 items of 1101 documents

Tuning four-wave mixing through temperature in ethanol-filled photonic crystal fiber

2016

In this paper, continuous tuning of four-wave mixing bands in an ethanol-filled photonic crystal fiber is investigated. A wide tuning range of the parametric bands, from 745 nm to 920 nm (signal) and from 1260 nm to 1710 nm (idler), is achieved through the thermo-optic effect. This corresponds to a frequency tuning range higher than 2000 cm−1; such wide range can be particularly useful in applications that require broadband wavelength conversion, e.g., CARS microscopy. Numerical calculations are in good agreement with experimental measurements.

Materials sciencebusiness.industry02 engineering and technologyMicrostructured optical fiber021001 nanoscience & nanotechnology01 natural sciencesSignal010309 opticsFour-wave mixingOpticsZero-dispersion wavelength0103 physical sciencesMicroscopyOptoelectronicsDispersion-shifted fiber0210 nano-technologybusinessPhotonic crystalPhotonic-crystal fiber2016 18th International Conference on Transparent Optical Networks (ICTON)
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Studying hypertension in ocular fundus images using Hausdorff dispersion ordering.

2010

Retinal arterial and vein diameters are altered in individuals at risk of cardiovascular events mainly due to high blood pressure. The measurement of retinal vessel diameters has been proved to reflect individuals' vascular health. Dispersion of such measures which are obtained by means of ocular fundus images is a major factor not usually considered in clinical research. In this paper, a method to evaluate if different levels of clinically relevant covariables induce greater dispersion in retinal arterial and vein diameters is proposed. A multivariate dispersion ordering, the Hausdorff dispersion order, is used to compare the level of dispersion in such diameters for different groups of pa…

medicine.medical_specialtyFundus OculiGeneral Biochemistry Genetics and Molecular BiologyRetinaVascular healthchemistry.chemical_compoundOphthalmologymedicineImage Processing Computer-AssistedHumansStatistical dispersionVeinGeneral Environmental SciencePharmacologyGeneral Immunology and Microbiologybusiness.industryApplied MathematicsGeneral NeuroscienceRetinal VesselsRetinalGeneral MedicineRetinal vesselBlood pressuremedicine.anatomical_structurechemistryHomogeneousModeling and SimulationHypertensionbusinessMathematical medicine and biology : a journal of the IMA
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Surface-plasmon hopping along coupled coplanar cavities

2007

International audience; We report on surface-plasmon propagation along coupled coplanar cavities periodically distributed in an otherwise unperturbed plasmonic crystal. We show that the dispersion of particular Bloch modes can exhibit multiple energy gaps that can be adjusted by choosing the cavity size. For resonant sizes, the composite crystals composed of juxtaposed cavities can support plasmon modes at frequencies within the gap of the unperturbed grating. In this case, we demonstrate that the surface-plasmon propagation relies on a hopping mechanism.

Cavity sizePhysics::Optics02 engineering and technologyGrating01 natural sciencesMolecular physicsCrystalOptics0103 physical sciencesDispersion (optics)[SPI.NANO]Engineering Sciences [physics]/Micro and nanotechnologies/Microelectronics010306 general physicsComputer Science::DatabasesPlasmonPhysics[PHYS.PHYS.PHYS-OPTICS]Physics [physics]/Physics [physics]/Optics [physics.optics][ PHYS.PHYS.PHYS-OPTICS ] Physics [physics]/Physics [physics]/Optics [physics.optics]business.industrySurface plasmon021001 nanoscience & nanotechnologyCondensed Matter PhysicsElectronic Optical and Magnetic Materials[SPI.OPTI]Engineering Sciences [physics]/Optics / PhotonicQuasiparticle[ SPI.NANO ] Engineering Sciences [physics]/Micro and nanotechnologies/Microelectronics[ SPI.OPTI ] Engineering Sciences [physics]/Optics / Photonic0210 nano-technologybusinessPhysical Review B
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Femtosecond pulse compression in a hollow-core photonic bandgap fiber by tuning its cross section

2012

Abstract We present a numerical study of soliton pulse compression in a seven-cell hollow-core photonic bandgap fiber. We analyze the enhancement of both the compression factor and the pulse shape quality of 360 nJ femtosecond pulses at the wavelength of 800 nm by tuning the cross section size of the fiber. We use the generalized non-linear Schrodinger equation in order to modeled the propagation of light pulses along the fiber. Our numerical results show that output compressed pulses can be obtained, in a propagation length of 31 cm, with a compression factor of 5.7 and pulse shape quality of 77% for a reduction of 4.5% of the cross section size of the fiber. The predicted compression fact…

Femtosecond pulse shapingMaterials scienceFilling factorbusiness.industryPhysics::OpticsPolarization-maintaining optical fiberMicrostructured optical fiberCondensed Matter PhysicsGraded-index fiberAtomic and Molecular Physics and OpticsElectronic Optical and Magnetic MaterialsOpticsHardware and ArchitecturePulse compressionDispersion-shifted fiberElectrical and Electronic EngineeringPlastic optical fiberbusinessPhotonics and Nanostructures - Fundamentals and Applications
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Notice of Removal: Stochastic generation of the phononic band structure of lossy and infinite crystals

2017

The concept of the band structure is central to the field of phononic crystals. Indeed, capturing the dispersion of Bloch waves — the eigenmodes of propagation in periodic media — gives invaluable information on allowed propagation modes, their phase and group velocities, local resonances, and band gaps. Band structures are usually obtained by solving an eigenvalue problem defined on a closed and bounded domain, which results in a discrete spectrum. There are at least two cases, however, that cannot be reduced to a simple eigenvalue problem: first, when materials showing dispersive loss are present and second, when the unit-cell extends beyond any bound, as in the case of phononic crystal o…

PhysicsField (physics)Band gapBounded functionQuantum mechanicsPhase (waves)Electronic band structureDispersion (water waves)Eigenvalues and eigenvectorsBloch wave2017 IEEE International Ultrasonics Symposium (IUS)
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Nonlocal field correlations and dynamical Casimir-Polder forces between one excited- and two ground-state atoms

2006

The problem of nonlocality in the dynamical three-body Casimir-Polder interaction between an initially excited and two ground-state atoms is considered. It is shown that the nonlocal spatial correlations of the field emitted by the excited atom during the initial part of its spontaneous decay may become manifest in the three-body interaction. The observability of this new phenomenon is discussed.

PhysicsSpontaneous decayQuantum PhysicsField (physics)Dynamical dispersion forceFOS: Physical sciencesThree-body forcesCondensed Matter PhysicsAtomic and Molecular Physics and OpticsCasimir effectQuantum nonlocalityQuantum mechanicsExcited statePhysics::Atomic and Molecular ClustersCausality and nonlocalityPhysics::Atomic PhysicsObservabilityQuantum Physics (quant-ph)Ground state
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Structures optiques dissipatives en cavité laser à fibre

2011

This thesis presents a study of the nonlinear dissipative dynamics of localized of self organized structures in passively mode-locked fiber laser through nonlinear polarization evolution. We reveal the existence of a gradual transition from the quasi-cw to mode locked dynamics in the multi-pulsing regime. We emphasize on the intermediate state, where various new dynamics are observed. We study collective behaviors of dissipative solitons in the presence of a continuous background. One of the complex and attractive dynamics presented is the "soliton rain", which composed of three field components : continuous modes of background, drifting of solitons and condensed phase solitons. This dynami…

Multi-pulse regimeSoliton dissipatifRespiration spectraleInteractions solitons-fond continuNonlinear polarization evolutionDissipative solitonsDispersion-managed fiber laser[ PHYS.COND.CM-GEN ] Physics [physics]/Condensed Matter [cond-mat]/Other [cond-mat.other]Laser à fibre à gestion de dispersionSolitons-background interactionsMode locking[PHYS.COND.CM-GEN] Physics [physics]/Condensed Matter [cond-mat]/Other [cond-mat.other]Blocage de modesFonctionnement multi-impulsionnelEvolution non linéaire de la polarisation[PHYS.COND.CM-GEN]Physics [physics]/Condensed Matter [cond-mat]/Other [cond-mat.other]Spectral breathing
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Influence of operational variables on the photodegradation kinetics of Monuron in aqueous titanium dioxide dispersions

1994

The degradation of Monuron [N′—(4-chlorophenyl)—N, N dimethyl urea] in aqueous TiO 2 dispersions irradiated in the near-UV region has been investigated using a Pyrex batch photoreactor. The influence on the degradation kinetics of pH, initial Monuron concentration and catalyst concentration has been studied. The mineralization of the pollutant was also investigated. Measurements of photon absorbed flows allowed to determine the quantum yield values; they were found to increase by increasing the initial pH of the dispersion.

chemistry.chemical_compoundAqueous solutionChemistryInorganic chemistryKineticsTitanium dioxideQuantum yieldMineralization (soil science)PhotodegradationDispersion (chemistry)Catalysis
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Acousto-Optic Interaction for Accurate Two-Mode Optical Fibers Characterization

2016

Accurate characterization of two-mode fibers by acousto-optic interaction is reported. Difference of modal index, group delay, and dispersion between the guided modes is obtained. Properties of the vector modes comprising the LP11 mode are investigated.

Mode volumeMaterials scienceOptical fiberbusiness.industryPhysics::OpticsGraded-index fiberlaw.inventionOpticsZero-dispersion wavelengthDouble-clad fiberlawDispersion (optics)Modal dispersionbusinessPhotonic-crystal fiberLatin America Optics and Photonics Conference
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2021

The reaction of :AlAriPr8 (AriPr8 = C6H-2,6-(C6H2-2,4,6-iPr3)2-3,5-iPr2) with ArMe6N3 (ArMe6 = C6H3-2,6-(C6H2-2,4,6-Me3)2) in hexanes at ambient temperature gave the aluminum imide AriPr8AlNArMe6 (1). Its crystal structure displayed short Al-N distances of 1.625(4) and 1.628(3) A with linear (C-Al-N-C = 180°) or almost linear (C-Al-N = 172.4(2)°; Al-N-C = 172.5(3)°) geometries. DFT calculations confirm linear geometry with an Al-N distance of 1.635 A. According to energy decomposition analysis, the Al-N bond has three orbital components totaling -1350 kJ mol-1 and instantaneous interaction energy of -551 kJ mol-1 with respect to :AlAriPr8 and ArMe6N:. Dispersion accounts for -89 kJ mol-1, w…

Infrared spectroscopyLinear molecular geometryGeneral ChemistryInteraction energyCrystal structure010402 general chemistry7. Clean energy01 natural sciencesBiochemistryCatalysis0104 chemical scienceschemistry.chemical_compoundCrystallographyColloid and Surface ChemistryMonomerchemistryAzideImideDispersion (chemistry)Journal of the American Chemical Society
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