Search results for "optical"

showing 10 items of 7671 documents

Electronic noses : specify or disappear

2000

Abstract When the quality control is achieved by using GC or GC/MS, the apparatus must comply with the applicable norms, but what about “electronic noses”? End users demand for formal specifications for selectivity, sensitivity, repeatability and sample throughput. The behavioural modelling of electronic olfactometers may provide specifications for these required parameters. This will allow both the measure itself, and evaluate the influence of the experimental errors on the sample classification. Users may expect to find a methodology allowing the performances of systems to be checked before any final decision and during routine use. We have demonstrated that the system sensitivity and log…

[SPI.OTHER]Engineering Sciences [physics]/OtherComputer sciencemedia_common.quotation_subjectAnalytical chemistrySample (statistics)02 engineering and technology01 natural sciencesFormal specificationMaterials ChemistryQuality (business)Sensitivity (control systems)Electrical and Electronic EngineeringInstrumentationThroughput (business)ComputingMilieux_MISCELLANEOUSmedia_commonMeasure (data warehouse)[SPI.OTHER] Engineering Sciences [physics]/Other010401 analytical chemistryMetals and AlloysRepeatability021001 nanoscience & nanotechnologyCondensed Matter Physics0104 chemical sciencesSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsReliability engineeringCoupling (computer programming)0210 nano-technology
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Influence of interfering gases on a carbon monoxide differential sensor based on SAW devices functionalized with cobalt and copper corroles

2021

International audience; <!--[if gte mso 9]&gt<xml&gt <w:WordDocument&gt <w:View&gtNormal</w:View&gt <w:Zoom&gt0</w:Zoom&gt <w:TrackMoves/&gt <w:TrackFormatting/&gt <w:HyphenationZone&gt21</w:HyphenationZone&gt <w:PunctuationKerning/&gt <w:ValidateAgainstSchemas/&gt <w:SaveIfXMLInvalid&gtfalse</w:SaveIfXMLInvalid&gt <w:IgnoreMixedContent&gtfalse</w:IgnoreMixedContent&gt <w:AlwaysShowPlaceholderText&gtfalse</w:AlwaysShowPlaceholderText&gt <w:DoNotPromoteQF/&gt <w:LidThemeOther&gtFR</w:LidThemeOther&gt <w:Compatibility&gt <w:BreakWrappedTables/&gt <w:SnapToGridInCell/&gt <w:WrapTextWithPunct/&gt <w:UseAsianBreakRules/&gt <w:DontGrowAutofit/&gt <w:SplitPgBreakAndParaMark/&gt <w:EnableOpenTypeKe…

[SPI.OTHER]Engineering Sciences [physics]/OtherMaterials sciencechemistry.chemical_element02 engineering and technology010402 general chemistry01 natural scienceschemistry.chemical_compoundIndoor air qualityMaterials ChemistryElectrical and Electronic EngineeringInstrumentationPotential impactbusiness.industry[SPI.OTHER] Engineering Sciences [physics]/OtherSurface acoustic waveMetals and AlloysHumidity021001 nanoscience & nanotechnologyCondensed Matter PhysicsCopper0104 chemical sciencesSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialschemistryOptoelectronics0210 nano-technologybusinessCobaltSensitivity (electronics)Carbon monoxide
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On chip shapeable optical tweezers

2013

International audience; Particles manipulation with optical forces is known as optical tweezing. While tweezing in free space with laser beams was established in the 1980s, integrating the optical tweezers on a chip is a challenging task. Recent experiments with plasmonic nanoantennas, microring resonators, and photonic crystal nanocavities have demonstrated optical trapping. However, the optical field of a tweezer made of a single microscopic resonator cannot be shaped. So far, this prevents from optically driven micromanipulations. Here we propose an alternative approach where the shape of the optical trap can be tuned by the wavelength in coupled nanobeam cavities. Using these shapeable …

[SPI.OTHER]Engineering Sciences [physics]/OtherMultidisciplinaryMaterials sciencebusiness.industryPhysics::Optics02 engineering and technologyOptical field021001 nanoscience & nanotechnologyChip01 natural sciencesArticle010309 opticsResonatorWavelengthOptical tweezers0103 physical sciencesTweezersOptoelectronics0210 nano-technologybusinessPlasmonComputingMilieux_MISCELLANEOUSPhotonic crystal
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Etude des sources supercontinuum à fibres transparentes dans le moyen infrarouge

2012

The work reported in this thesis deals with the study of the supercontinuum generation in fibers transparent in the mid-infrared. To generate a supercontinuum between 3 and 5 µm we compare different glass families such as fluoride glasses, tellurite glasses and chalcogenide glasses. These fibers are pumped with fiber lasers emitting at 2 µm with nanosecond or picosecond pulse duration. This wavelength allows us to reach the zero dispersion wavelength of the chalcogenide tapered fibers. We report supercontinuum generation up to 3800 nm in a fluoride glass fiber. A connection with 75 % of transmission is made between a ZBLAN and a SiO2 fiber. We also measured absorption lines of the methane a…

[SPI.OTHER]Engineering Sciences [physics]/OtherOptical fiber[ SPI.OTHER ] Engineering Sciences [physics]/Other[PHYS.COND.CM-GEN] Physics [physics]/Condensed Matter [cond-mat]/Other [cond-mat.other][SPI.OTHER] Engineering Sciences [physics]/OtherNon linear optic[PHYS.COND.CM-GEN]Physics [physics]/Condensed Matter [cond-mat]/Other [cond-mat.other][ PHYS.COND.CM-GEN ] Physics [physics]/Condensed Matter [cond-mat]/Other [cond-mat.other]InfraredSupercontinuumInfrarougeOptique non linéaireFibre optique
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Nouveaux systèmes de contrôle de la polarisation de la lumière par effets non lineaires dans les fibres optiques

2013

This thesis deals with the work the development of an all-optical device for the control of the polarization state of light. Actually, this feature of light remains so far an uncontrolled variable, which can degrade the performances of all-optical systems. Based on nonlinear interaction between two counterpropagating waves inside an optical fiber, this device called polarization attractor allows to control the polarization state of light without polarization dependent losses.In a first part, we carry out extensive studies of the polarization attractor properties leading to the control and the regeneration of the polarization state of the 10-Gb/s NRZ and RZ telecommunication signals. Then, t…

[SPI.OTHER]Engineering Sciences [physics]/OtherOptical fiber[ SPI.OTHER ] Engineering Sciences [physics]/Other[SPI.OTHER] Engineering Sciences [physics]/OtherSphère de PoincaréNonlinear opticPoincaré sphere[ PHYS.COND.CM-GEN ] Physics [physics]/Condensed Matter [cond-mat]/Other [cond-mat.other]Optique non linéaireFibre optique[PHYS.COND.CM-GEN] Physics [physics]/Condensed Matter [cond-mat]/Other [cond-mat.other][PHYS.COND.CM-GEN]Physics [physics]/Condensed Matter [cond-mat]/Other [cond-mat.other]Polarization state of lightEtat de polarisation de la lumière
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Residual Phase Noise Measurement of Optical Second Harmonic Generation in PPLN Waveguides

2017

We report on the characterization, including residual phase noise and fractional frequency instability, of fiber-coupled PPLN non-linear crystals. These components are devoted to frequency doubling 871 nm light from an extended-cavity diode laser to produce a 435.5 nm beam, corresponding to the ytterbium ion electric quadrupole clock transition. We measure doubling efficiencies of up to 117.5 %/W. Using a Mach-Zehnder interferometer and an original noise rejection technique, the residual phase noise of the doublers is estimated to be lower than ${\rm -35\, dBrad^2/Hz}$ at 1 Hz, making these modules compatible with up-to-date optical clocks and ultra-stable cavities. The influence of externa…

[SPI.OTHER]Engineering Sciences [physics]/OtherPhysics - Instrumentation and DetectorsMaterials scienceAtomic Physics (physics.atom-ph)Lithium niobateFOS: Physical sciencesPhysics::Optics01 natural sciences7. Clean energyPhysics - Atomic Physicslaw.invention010309 opticsOptical pumpingchemistry.chemical_compoundOpticslaw0103 physical sciencesPhase noise[PHYS.PHYS.PHYS-INS-DET]Physics [physics]/Physics [physics]/Instrumentation and Detectors [physics.ins-det]Electrical and Electronic Engineering010306 general physicsbusiness.industrySecond-harmonic generationInstrumentation and Detectors (physics.ins-det)LaserAtomic and Molecular Physics and OpticsAtomic clock[PHYS.PHYS.PHYS-GEN-PH]Physics [physics]/Physics [physics]/General Physics [physics.gen-ph]Electronic Optical and Magnetic MaterialsInterferometrychemistrybusinessNoise (radio)Optics (physics.optics)Physics - Optics
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High bit rate optical pulses sources generation and microstructured chalcogenide fibers characterizations

2011

This memory of thesis s' registered voter in the context of the FUTUR project financed by l'ANR and concerning the development of optical finctions fot the high bit-rate transmissions in the Network heart and carries on very high rates optical fibers sources generation and the optical chalcogenide microstructured fiber charaterization. For this purpose, we study the linear and non-linear characteristics of microstructured chalcogenide fibers conceived and realized in various collaborations within the framework of the ANR FUTUR project. For that a great number of characterizations methods were developed giving a comparison between a standard single mode fiber and there microstructured chalco…

[SPI.OTHER]Engineering Sciences [physics]/Other[ SPI.OTHER ] Engineering Sciences [physics]/Other[SPI.OTHER] Engineering Sciences [physics]/OtherNon Linear Effect[ PHYS.COND.CM-GEN ] Physics [physics]/Condensed Matter [cond-mat]/Other [cond-mat.other]Optical FiberHigh bit-rate trainTrain à très haut débitFibre optiqueMicrostructured chalcogenide Optical Fiber[PHYS.COND.CM-GEN] Physics [physics]/Condensed Matter [cond-mat]/Other [cond-mat.other]High Linear Effect[PHYS.COND.CM-GEN]Physics [physics]/Condensed Matter [cond-mat]/Other [cond-mat.other]Effet Non-linéairesSHG-FROGFibre optique chalcogénure microstructurée
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Immobilization of single-stranded DNA fragments to solid surfaces and their repeatable specific hybridization : covalent binding or adsorption ?

2004

Abstract The different steps of the immobilization process of single-stranded DNA (ssDNA) on surfaces by means of chemical grafting have been investigated using systematic measurements of grafting and hybridization densities by means of radioactive labelling. The immobilization by chemical grafting to a dense monomolecular layer of N-hydroxysuccinimidyl ester reactive functions attached to silica plates was performed from a dilute solution of amino-terminated oligonucleotides (10 μmol/l). The slow evaporation of the solvent allowed to increase the DNA grafting density by a factor of 10. A precise control of the rinsing process that followed the immobilization reaction allowed the discrimina…

[SPI.OTHER]Engineering Sciences [physics]/Other[SDV]Life Sciences [q-bio]Inorganic chemistry02 engineering and technology010402 general chemistry01 natural scienceschemistry.chemical_compoundAdsorptionMaterials ChemistryOrganic chemistryElectrical and Electronic EngineeringInstrumentationComputingMilieux_MISCELLANEOUSOligonucleotide[SPI.OTHER] Engineering Sciences [physics]/OtherMetals and Alloys[CHIM.MATE]Chemical Sciences/Material chemistryBIOLOGIE MOLECULAIRE021001 nanoscience & nanotechnologyCondensed Matter PhysicsGraftingEvaporation (deposition)0104 chemical sciencesSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsSolvent[CHIM.THEO]Chemical Sciences/Theoretical and/or physical chemistry[CHIM.POLY]Chemical Sciences/Polymers[SDV.SP.PG]Life Sciences [q-bio]/Pharmaceutical sciences/Galenic pharmacologychemistryCovalent bond0210 nano-technologyLayer (electronics)DNA
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On improving the accuracy of Visible Light Positioning system using deep autoencoder

2020

International audience; DC-biased optical Orthogonal Frequency DivisionMultiplexing (DCO-OFDM)-based visible light positioning (VLP)technology along with the Received Signal Strength(RSS) po-sitioning algorithm is widely used to achieve centimeter levelpositioning accuracy for incoming 5G era, especially indoorenvironment. However, the DCO-OFDM has the peak-to-averagepower ratio (PAPR) issue which imposes the nonlinear distortionand it will directly affect the positioning accuracy in the VLPsystem. The PAPR reduction scheme is urgently needed. There-fore, in this paper, the impact of PAPR reduction scheme onpositioning accuracy is investigated. The positioning accuracywith and without the s…

[SPI]Engineering Sciences [physics]selectedmapping (SLM)[SPI] Engineering Sciences [physics]DC-biased optical orthogonal frequency division multiplex-ing (DCO-OFDM)Visible Light Positioning(VLP)VisibleLight Communication(VLC)Localiza-tionpeak-to-average power ratio (PAPR)5GReceived Signal Strength
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Excitons in few-layer hexagonal boron nitride: Davydov splitting and surface localization

2018

Hexagonal boron nitride (hBN) has been attracting great attention because of its strong excitonic effects. Taking into account few-layer systems, we investigate theoretically the effects of the number of layers on quasiparticle energies, absorption spectra, and excitonic states, placing particular focus on the Davydov splitting of the lowest bound excitons. We describe how the inter-layer interaction as well as the variation in electronic screening as a function of layer number $N$ affects the electronic and optical properties. Using both \textit{ab initio} simulations and a tight-binding model for an effective Hamiltonian describing the excitons, we characterize in detail the symmetry of t…

ab-initio many-body perturbation theoryAb initio02 engineering and technology01 natural sciences[SPI.MAT]Engineering Sciences [physics]/MaterialsTight bindingtight-bindingGeneral Materials ScienceOPTICAL ABSORPTIONWave functionmedia_commonPhysicsCondensed Matter - Materials ScienceCondensed matter physics021001 nanoscience & nanotechnologyCondensed Matter PhysicsCondensed Matter::Mesoscopic Systems and Quantum Hall Effect: Physique [G04] [Physique chimie mathématiques & sciences de la terre]Mechanics of MaterialsMATERIAUX 2DTIGHT-BINDINGQuasiparticlesymbols0210 nano-technologyHamiltonian (quantum mechanics)excitonsAbsorption spectroscopyExcitonmedia_common.quotation_subject: Physics [G04] [Physical chemical mathematical & earth Sciences]HEXAGONAL BORON NITRIDEFOS: Physical sciencesEXCITONAsymmetryBNsymbols.namesakeCondensed Matter::Materials ScienceFIRST-PRINCIPLES CALCULATIONS0103 physical sciencesMesoscale and Nanoscale Physics (cond-mat.mes-hall)hexagonal boron nitride010306 general physicsCondensed Matter::Quantum GasesCondensed Matter - Mesoscale and Nanoscale PhysicsCondensed Matter::OtherEXCITONSMechanical EngineeringMaterials Science (cond-mat.mtrl-sci)Davydov splittingGeneral Chemistry
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