Search results for "electronics"

showing 10 items of 4340 documents

Applications and development of acoustic and microwave atomic force microscopy for high resolution tomography analysis

2016

The atomic force microscope (AFM) is a powerful tool for the characterization of organic and inorganic materials of interest in physics, biology and metallurgy. However, conventional scanning probe microscopy techniques are limited to the probing surface properties, while the subsurface analysis remains difficult beyond nanoindentation methods. Thus, the present thesis is focused on two novel complementary scanning probe techniques for high-resolution volumetric investigation that were develop to tackle this persisting challenge in nanometrology.The first technique considered, called Mode Synthesizing Atomic Force Microscopy (MSAFM), has been exploited in collaboration with Dr. Laurene Teta…

Tomographie et reconstruction 3DMicroscopie à force atomique acoustique (MSAFM)Atomic force microscopy (AFM)[SPI.NANO] Engineering Sciences [physics]/Micro and nanotechnologies/MicroelectronicsMode Synthesizing atomic force microscopy (MSAFM)Tomography anTomographie et reconstruction 3Dd 3D reconstruction[PHYS.PHYS] Physics [physics]/Physics [physics]Microscopie à force atomique micro-onde (SMM)Scanning microwave microscopy (SMM)Microscopie à force atomique (AFM)
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Whispering gallery mode resonator sensors referenced to saturated absorption lines in rubidium atoms and a fs frequency comb

2019

Optical Whispering Gallery Mode Resonators (WGMR) can be produced by many methods, for example, by flame melting of silica fibers [1], by polishing of crystals [2], by optical lithography, by solidifying transparent materials, or using commercially available microspheres. They confine light by the total internal reflection and do not need mirror coatings. A part of radiation is traveling outside the WGMR as an evanescent wave and it is used for sensing applications. WGMRs are becoming increasingly popular as biosensors [3] when their surface is covered with antibodies to provide selectivity. Advantage is that light circulates in the resonator and interacts many times with a few molecules at…

Total internal reflectionMaterials scienceAbsorption spectroscopybusiness.industryPolishing01 natural sciences010305 fluids & plasmasCavity ring-down spectroscopylaw.inventionFrequency combResonatorlaw0103 physical sciencesOptoelectronicsWhispering-gallery wavePhotolithography010306 general physicsbusiness
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Tuneable multicoloured patterns from photonic cross-communication between cholesteric liquid crystal droplets

2014

Monodisperse droplets of planar-aligned cholesteric (N*) liquid crystal exhibit an intriguing capacity for photonic cross-communication, giving rise to colourful patterns that depend sensitively on the N* pitch, droplet positions and illuminated area. The phenomenon results from a combination of omnidirectional selective reflection of N* droplets—which thus act as spherically symmetric self-assembled photonic crystals—and total internal reflection at the continuous phase surface. We outline how the unique optical properties can be employed in numerous applications.

Total internal reflectionMaterials scienceCholesteric liquid crystalbusiness.industryPhysics::OpticsGeneral ChemistryPhysics::Fluid DynamicsOpticsLiquid crystalMonodisperse dropletsMaterials ChemistryOptoelectronicsSelective reflectionPhotonicsbusinessOmnidirectional antennaJ. Mater. Chem. C
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Synchrotron Mössbauer Reflectometry in Materials Science

1999

57Fe nuclear resonant scattering experiments are reported on iron-containing thin films using 14.41 keV synchrotron radiation at angles of grazing incidence around and slightly above the critical angle of the electronic total reflection. In partially oxidised α–Fe films of 20 nm original thickness various oxide and oxihydroxide phases are identified at different depth. In a [Fe/FeSi]10multilayer grown on Zerodur®substrate the Fe—Fe interlayer coupling varies with the distance from the substrate. The antiferromagnetic order of the top layers of this multilayer can be suppressed by external magnetic field. These examples demonstrate the efficiency of synchrotron Mossbauer reflectometry (SMR),…

Total internal reflectionMaterials scienceCondensed matter physicslawMössbauer spectroscopySynchrotron radiationSubstrate (electronics)Thin filmReflectometryHyperfine structureSynchrotronlaw.invention
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Optical near-field distributions of surface plasmon waveguide modes

2003

International audience; Thin gold stripes, featuring various widths in the micrometer range, were microfabricated to obtain surface-plasmon guides on a glass substrate. Each metal stripe (MS) was excited by an incident surface-plasmon polariton which was itself launched on an extended thin gold film by the total internal reflection of a focused beam coming through the substrate. The optical near-field distributions of the surface-plasmon (sp) modes sustained by the stripes were then recorded using a photon scanning tunneling microscope (PSTM). For a fixed frequency of the incident light, these field distributions are found to depend on the widths of the stripes. We first provide an experime…

Total internal reflectionMaterials sciencePOLARITONbusiness.industrySurface plasmonPhysics::Optics02 engineering and technologyPROPAGATION021001 nanoscience & nanotechnology01 natural sciencesSurface plasmon polaritonRayOpticsMETAL-FILM0103 physical sciencesFINITE-WIDTHReflection (physics)[ SPI.NANO ] Engineering Sciences [physics]/Micro and nanotechnologies/Microelectronics[SPI.NANO]Engineering Sciences [physics]/Micro and nanotechnologies/Microelectronics010306 general physics0210 nano-technologybusinessRefractive indexPlasmonLocalized surface plasmon
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Emission of Rhodamine B in PMMA opals for luminescent solar concentrators

2012

In conventional luminescent solar concentrators (LSC) incident light is absorbed by luminophores and emitted isotropically. Most of the emitted light is trapped inside the LSC by total internal reflection and guided to solar cells at the edges. Light emitted towards the surfaces, however, is lost in the escape cone. Furthermore, when the luminophore emits light in its absorption range, light is lost due to reabsorption. To overcome these losses, we embed the luminescent material in photonic structures to influence the emission characteristics. Directional and spectral redistribution of emission is supposed to enhance the light guiding in LSCs and reduce reabsorption losses. For this purpose…

Total internal reflectionMaterials sciencebusiness.industryLuminescent solar concentratorRaychemistry.chemical_compoundOpticschemistryRhodamine BLuminophoreOptoelectronicsPhotonicsbusinessLuminescencePhotonic crystalPhotonics for Solar Energy Systems IV
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Bloch Modes Coupling in Photonic Crystal Waveguides

2005

We investigate the properties of Bloch modes inside a photonic crystal waveguide. By using simultaneously a near field optical microscope and a transmittance setup, we demonstrate that Bloch modes having different parity are coupled.

Total internal reflectionMaterials sciencebusiness.industryPhysics::OpticsParity (physics)OpticsMicroscopyTransmittanceOptoelectronicsNear-field scanning optical microscopeCrystal opticsbusinessElectron-beam lithographyPhotonic crystalIntegrated Photonics Research and Applications/Nanophotonics for Information Systems
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Back-scattering of whispering-gallery-modes resonances of cylindrical microcavities: Refractometric applications

2009

Whispering-gallery modes (WGM) resonances of microcapillaries are directly compatible with microfluidic systems and have demonstrated its suitability for refractometric applications [1]. Microcapillaries with a submicrometric wall exhibit very large wavelength shifts as a function of the refractive index of the liquids that fill the inside of the capillary [2]. The spatial separation between the surface where the total internal reflection takes place (the outer surface) and the sensing surface (the inner surface) where the wave interacts with the analyte is a unique property that can be exploited to deal with analytes with a refractive index higher than that of the capillary [2].

Total internal reflectionMaterials sciencebusiness.industryScatteringPhysics::OpticsPhysics::Fluid DynamicsWavelengthOpticsSurface waveReflection (physics)OptoelectronicsWhispering-gallery wavebusinessRefractive indexRefractometryCLEO/Europe - EQEC 2009 - European Conference on Lasers and Electro-Optics and the European Quantum Electronics Conference
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Refractometric sensor based on whispering-gallery modes of thin capillarie.

2009

Whispering-gallery modes resonances of submicron wall thickness capillaries exhibit very large wavelength shifts as a function of the refractive index of the medium that fills the inside. The sensitivity to refractive index changes is larger than in other optical microcavities as microspheres, microdisks and microrings. The outer surface where total internal reflection takes place remains always in air, enabling the measure of refractive index values higher than the refractive index of the capillary material. The fabrication of capillaries with submicron wall thickness has required the development of a specific technique. A refractometer with a response higher than 390 nm per refractive ind…

Total internal reflectionMaterials sciencebusiness.industryÒpticaAtomic and Molecular Physics and OpticsWavelengthOpticsRefractometerSurface waveOptoelectronicsWhispering-gallery wavebusinessStep-index profileRefractometryRefractive indexOptics express
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A Compact SPICE Model for Organic TFTs and Applications to Logic Circuit Design

2016

This work introduces a compact DC model developed for organic thin film transistors (OTFTs) and its SPICE implementation. The model relies on a modified version of the gradual channel approximation that takes into account the contact effects, occurring at nonohmic metal/organic semiconductor junctions, modeling them as reverse biased Schottky diodes. The model also comprises channel length modulation and scalability of drain current with respect to channel length. To show the suitability of the model, we used it to design an inverter and a ring oscillator circuit. Furthermore, an experimental validation of the OTFTs has been done at the level of the single device as well as with a discrete-…

Transistor modelMaterials scienceFlexible electronics; organic thin film transistors; SPICE modelingSpiceSemiconductor device modelingHardware_PERFORMANCEANDRELIABILITY02 engineering and technologyRing oscillatorIntegrated circuit01 natural scienceslaw.inventionComputer Science::Hardware ArchitectureComputer Science::Emerging Technologieslaw0103 physical sciencesElectronic engineeringHardware_INTEGRATEDCIRCUITSElectrical and Electronic EngineeringFlexible electronics010302 applied physicsChannel length modulationbusiness.industryTransistorSchottky diodeCondensed Matter::Mesoscopic Systems and Quantum Hall Effect021001 nanoscience & nanotechnologyFlexible electronicsComputer Science Applicationsorganic thin film transistorsLogic gateSPICE modelingInverterOptoelectronics0210 nano-technologybusinessHardware_LOGICDESIGNIEEE Transactions on Nanotechnology
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