Search results for "Optical Spectroscopy"

showing 10 items of 31 documents

Optical active centres in ZnO samples

2006

Abstract In recent years, there has been a resurgence in the interest in the use of ZnO (Eg ∼ 3.37 eV) as a material for a wide range of opto-emitter applications spanning visible and short wavelengths. Bulk, thin films and nanomaterials obtained using different synthesis methods have been investigated for optoelectronic and biotechnological device applications. Nominally undoped bulk samples typically present a myriad-structured near-band-edge recombination, mainly due to free/bound excitons and donor–acceptor pair transitions. Furthermore, deep level emission due to intrinsic defects and extrinsic impurities, such as transition metal ions, are commonly observed in different grades of bulk…

II–VI semiconductorsChemical vapour depositionLuminescencePhotoluminescenceMaterials scienceLaser depositionOptical spectroscopyAnalytical chemistryNanoparticleCrystal growthMaterials ChemistryColloidsThin filmRutherford backscatteringDopingNanoclustersCondensed Matter PhysicsNanocrystalsX-ray diffractionElectronic Optical and Magnetic MaterialsIon implantationNanocrystalCeramics and CompositesNanoparticlesCrystal growthPlasma depositionSingle crystalJournal of Non-Crystalline Solids
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Eu3+ ion distribution in oxyfluoride glass nanocomposites

2019

The authors are grateful to Dr. Andris Fedotovs for photography of the samples. This research is funded by the Latvian Council of Science, project “Novel transparent nanocomposite oxyfluoride materials for optical applications”, project No. LZP-2018/1-0335.

LanthanideMaterials scienceOptical spectroscopychemistry.chemical_element02 engineering and technology01 natural scienceslaw.inventionIonParamagnetismLattice constantlaw0103 physical sciences:NATURAL SCIENCES:Physics [Research Subject Categories]Materials ChemistryTransparent oxyfluoride glass ceramicsElectron paramagnetic resonance010302 applied physicsDoping021001 nanoscience & nanotechnologyCondensed Matter PhysicsX-ray diffractionElectronic Optical and Magnetic MaterialschemistryActivator distributionX-ray crystallographyCeramics and CompositesPhysical chemistryElectron paramagnetic resonance0210 nano-technologyEuropiumJournal of Non-Crystalline Solids
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Afterglow, TL and OSL properties of Mn2+-doped ZnGa2O4 phosphor

2019

The work was supported by Latvian Research Council via LZP-2018/1–0214 research project as well as the Latvian-Ukrainian Joint Research Project (LV-UA/2016/1 in Latvia and M/8-2018 (No. 0118U001672) in Ukraine), and by the NATO SfP Project G4649. The work was also partially supported by the Polish National Science Center (project 2018/31/B/ST8/00774). A. Luchechko gratefully acknowledges a grant from Institute of Physics PAS for a research visit to the Institute.

Materials for devices0301 basic medicineMaterials scienceOptical spectroscopyAnalytical chemistrylcsh:Medicinechemistry.chemical_elementPhosphorManganeseengineering.materialRadiation7. Clean energyArticleIon03 medical and health sciences0302 clinical medicine:NATURAL SCIENCES:Physics [Research Subject Categories]lcsh:ScienceMultidisciplinarylcsh:RDopingSpinelMaterials scienceAfterglow030104 developmental biologychemistryengineeringlcsh:QLuminescence030217 neurology & neurosurgeryScientific Reports
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Absorption spectroscopy of single InAs self-assembled quantum dots

2004

Abstract Excitonic transitions of single InAs self-assembled quantum dots were directly measured at 4.2 K in an optical transmission experiment. We use the Stark effect in order to tune the exciton energy of a single quantum dot into resonance with a narrow-band laser. With this method, sharp resonances in the transmission spectra are observed. The oscillator strengths as well as the homogeneous line widths of the single-dot optical transitions are obtained. A clear saturation in the absorption is observed at modest laser powers.

Materials scienceAbsorption spectroscopyExcitonResonanceCondensed Matter::Mesoscopic Systems and Quantum Hall EffectCondensed Matter PhysicsLaserAtomic and Molecular Physics and OpticsElectronic Optical and Magnetic Materialslaw.inventionsymbols.namesakeStark effectQuantum dot laserlawQuantum dotsymbolsQuantum-optical spectroscopyAtomic physicsPhysica E: Low-dimensional Systems and Nanostructures
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In situ monitoring of pulsed laser indium–tin-oxide film deposition by optical emission spectroscopy

2001

We performed optical emission spectroscopy to monitor the plasma produced during the ablation of indium-tin-oxide targets under different oxygen pressure conditions using a pulsed UV laser. Molecular bands of InO were identified in the fluorescent spectra produced by pulsed laser ablation. InO line monitoring allowed obtaining the optimal conditions for good-quality ITO film deposition. We demonstrated that it is possible to correlate InO line spectroscopic parameters with the conditions required to fabricate a high-conductivity and high-transparent ITO thin film. In particular, low resistivity (10-4 to 10-3 Ω cm) was obtained in films deposited at room temperature by regulating oxygen pres…

Materials sciencebusiness.industryAnalytical chemistryPlasmaIndium–tin-oxide films Pulsed laser deposition Optical emission spectroscopy Plasma diagnosticsSettore ING-INF/01 - ElettronicaAtomic and Molecular Physics and OpticsAnalytical ChemistryIndium tin oxidePulsed laser depositionElectrical resistivity and conductivityOptoelectronicsPlasma diagnosticsPLD ITO optical spectroscopyThin filmbusinessInstrumentationSpectroscopyDeposition (law)Line (formation)Spectrochimica Acta Part B: Atomic Spectroscopy
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Poor optical stability of molecular dyes when used as absorbers in water-based tissue-simulating phantoms

2019

Biomedical optical systems and models can be easily validated by the use of tissue-simulating phantoms. They can consist of water-based turbid media which often include inks (India ink and molecular dyes) as absorbers. Optical stability of commonly exploited inks under the influence of light, pH changes and the addition of TiO2 and surfactant, was studied. We found that the exposure to ultraviolet and visible light can crucially affect the absorption properties of molecular dyes. On average, absorption peaks decreased by 47.3% in 150 exposure hours. Furthermore, dilution can affect ink’s pH and by that, its decay rate under light exposure. When TiO2 was added to the phantoms, all molecular …

Materials sciencesurfactantturbid media02 engineering and technologymedicine.disease_cause01 natural sciencesIndia ink010309 opticsPulmonary surfactant0103 physical sciencesmedicinetissue-simulating phantomsmolecular dyesoptical spectroscopySpectroscopyAbsorption (electromagnetic radiation)Inkwell021001 nanoscience & nanotechnology3. Good healthDilutionoptical stabilityChemical engineering:NATURAL SCIENCES::Physics::Atomic and molecular physics [Research Subject Categories]Photocatalysis0210 nano-technologyUltravioletVisible spectrum
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New Developments in the Production and Research of Actinide Elements

2022

Atoms 10(2), 61 (2022). doi:10.3390/atoms10020061

Nuclear and High Energy Physicsatomic structure theory; optical spectroscopy; actinides and transactinides; atomic and nuclear properties; thorium-229; trace analysisddc:530Condensed Matter Physics530Atomic and Molecular Physics and Optics
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Radiation hardening of Rare-Earth doped fiber amplifiers

2012

We investigated the radiation hardening of optical fiber amplifiers operating in space environments. Through a real-time analysis in active configuration, we evaluated the role of Ce in the improvement of the amplifier performance against ionizing radiations. Ce-codoping is an efficient hardening solution, acting both in the limitation of defects in the host glass matrix of RE-doped optical fibers and in the stabilization of lasing properties of the Er3+-ions. On the one hand, in the nearinfrared region, radiation induced attenuation measurements show the absence of radiation induced P-related defect species in host glass matrix of the Ce-codoped active fibers; on the other hand, in the Ce-…

Optical amplifier optical spectroscopy Infrared Spectra Laser Excitation Rare-Earth Elements
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Paramagnetic germanium-related centers induced by energetic radiation in optical fibers and preforms

2009

International audience; We investigated the creation processes of Ge-related paramagnetic point defects in silica fibers and preforms, doped with different amounts of germanium, and X-ray irradiated at several radiation doses. Different paramagnetic defect species, like GeE0, Ge(1) and Ge(2), were revealed by electron paramagnetic resonance measurements and their concentration was studied as a function of the irradiation dose. The comparison with the optical absorption spectra points out the main role of Ge(1) on the optical transmission loss of fibers in the UV region.

Optical fiberAbsorption spectroscopyAnalytical chemistryOptical spectroscopychemistry.chemical_elementGermaniumPACS: 42.81.-I 61.72.uf 61.80.Cb 76.30.Mi 78.40.Pglaw.inventionAbsorptionParamagnetismlawElectron spin resonanceMaterials ChemistryOptical fibersIrradiationElectron paramagnetic resonance[PHYS.PHYS.PHYS-OPTICS]Physics [physics]/Physics [physics]/Optics [physics.optics]ResonanceSilicaSilica optical fiber defects Geermanium dopingCondensed Matter PhysicsCrystallographic defectElectronic Optical and Magnetic MaterialschemistryCeramics and CompositesDefects
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Deposition of High Quality Indium Tin Oxide Films by Monitoring InO Emission Lines

2001

PLD ITO Optical spectroscopySettore ING-INF/01 - Elettronica
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