Search results for "luminescence."

showing 10 items of 1568 documents

The luminescence properties of ZnO nanopowders

2007

Pure and Al3+ doped ZnO nanopowders were studied by means of time-resolved luminescence spectroscopy. The powders were synthesized by hydrothermal and plasma methods. These powders were used as a raw material for vaporization-condensation process inside the Solar reactor. The commercially available ZnO nanopowder was studied for a comparison. Exciton to defect band luminescence intensity ratio was estimated in different types of ZnO nanopowders. It was found that nanopowders with whiskers morphology show superlinear luminescence intensity depending on excitation density. The observed effect depends on the average nanoparticle size and on the powder morphology.

HistoryMaterials scienceWhiskersExcitonDopingAnalytical chemistryNanoparticleLuminescenceSpectroscopyHydrothermal circulationExcitationComputer Science ApplicationsEducationJournal of Physics: Conference Series
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Up-conversion process in erbium doped lithium fluoride bulk crystal, lithium borate glass and glass ceramics

2007

In our research the up-conversion processes in Er doped bulk LiF crystal, lithium borate oxyfluoride glass and lithium borate oxyfluoride glass ceramics were studied: up- conversion and traditional photoluminescence spectra, the up-converted signal as a function of the laser power are presented. It was found that sharp luminescence bands in the visible part of the spectrum appear when the bulk crystal is subjected to IR irradiation at 980 nm by a laser diode. After the heat treatment of the glass submicron crystallites were detected by SEM technique. The presence of LiF crystalline phase in the oxyfluoride glass ceramics was proved by XRD method. The questions about the synthesis of the oxy…

HistoryPhotoluminescenceLithium borateMaterials scienceDopingAnalytical chemistryLithium fluorideMineralogychemistry.chemical_elementComputer Science ApplicationsEducationCrystalErbiumchemistry.chemical_compoundchemistryCrystalliteLuminescenceJournal of Physics: Conference Series
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Luminescence properties of AlN nanostructures revealed under UV light irradiation

2007

The luminescence properties of the AlN nanostructures – nanorods and nanotips -revealed under the UV irradiation are similar to those of the AlN ceramics. Presumably they are induced by the recombination processes in the oxygen-related centers. All the studied luminescence processes (photoluminescence, thermoluminescence and optically stimulated luminescence) in the nanostructures occur mainly through the host lattice excitation. That may be explained by the smaller concentration of the defect centers and more perfect structure of the host lattice of the nanostructures compared to the ceramics. The small mutual differences revealed in the spectra and TL curves of the AlN nanotips and nanoro…

HistoryPhotoluminescenceNanostructureMaterials scienceOptically stimulated luminescencebusiness.industryCrystal structurePhotochemistryThermoluminescenceComputer Science ApplicationsEducationOptoelectronicsNanorodIrradiationLuminescencebusinessJournal of Physics: Conference Series
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Comparison of ZrO2:Y nanocrystals and macroscopic single crystal luminescence

2007

The luminescence spectra of a tetragonally structured ZrO2:Y single crystal and nanocrystals were compared. It was found that the number of luminescence centers contributed to the spectra. The excitation of luminescence within the band gap region led to different luminescence spectra for the single crystal and nanocrystal samples, whereas recombinative luminescence spectra were the same for both samples. The origin of this difference is that in the nanocrystals, even under excitation within the band gap, charge carriers were created. Zirconium- oxygen complexes distorted by intrinsic defects were proposed to be the luminescence centres responsible for the wide luminescence band observed.

HistoryZirconiumMaterials scienceBand gapchemistry.chemical_elementSpectral lineComputer Science ApplicationsEducationCrystallographyNanocrystalchemistryCharge carrierLuminescenceSingle crystalExcitationJournal of Physics: Conference Series
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Investigation of archaeological amphorae from the Egadi battles

2022

Abstract Archaeological ceramics are considered one of the most important sources of both technological and chronological information. Here, the investigation of some archaeological underwater amphorae from the Egadi’s Battle, that decided the end of the First Punic War (241 B.C.), is reported. X-ray Diffraction (XRD), X-ray Fluorescence (XRF), petrography, and Thermoluminescence (TL) were used to determine the composition of the amphorae and to evaluate the compatibly of their age with the above Battle. Considering the historical importance of the act and the well-defined historical collocation these amphorae represent an interesting archaeometric case study.

HistoryamphoraeMultianalytical approachCanaletto Programunderwater siteEgadi battlethermoluminescenceComputer Science ApplicationsEducationJournal of Physics: Conference Series
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The Photoluminescence and Biochemical Properties of Biological

1995

The UV-VIS range photoiuminescence of entomophatogenic mushrooms Entomophora txaxteriana (Petch) Hall et Bell, Beauveria bassiana (Bals) Vuill as well as of biologicals on their basis enthomophtorin and bouverin are examined. They were worked out for abolition insect-pests of plants: louses of apple-tree and Colorado potato beetles, therefore obtaining ecologically clean fruits and potatoes. The biologicals were produced in the Institute of Biology (Latvian AS) by K. Jegina on basis of regional mushrooms.

HorticulturePhotoluminescencebiologyRange (biology)Beauveria bassianabiology.organism_classification
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Relation between autoradiographically measured blood flow and ATP concentrations obtained from imaging bioluminescence in tumors following hypertherm…

1993

The effects of moderate local hyperthermia (43.3 degrees C/30 min) on regional blood flow and regional ATP distribution in the amelanotic hamster melanoma A-Mel-3 were investigated by high-resolution techniques. Blood flow and ATP concentrations were measured simultaneously in treated and untreated tumors and in adjacent tissues by means of (14C)-Iodoantipyrine autoradiography and quantitative imaging bioluminescence in consecutive tissue sections at 3, 12 and 24 hr following treatment. Digital image processing and the use of a special algorithm allowed the regional interrelationship of the 2 parameters to be quantified. Measurements revealed a great heterogeneity of blood flow and ATP betw…

HyperthermiaMaleCancer Researchmedicine.medical_specialtyPathologySkin NeoplasmsTime FactorsHemodynamicsHamsterAdenosine TriphosphateInternal medicineCricetinaemedicineDistribution (pharmacology)BioluminescenceAnimalsAmelanotic melanomaMelanomaChemistryMelanomaBlood flowHyperthermia Inducedmedicine.diseaseEndocrinologyOncologyRegional Blood FlowLuminescent MeasurementsAutoradiographyInternational journal of cancer
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Oscillator strength reduction induced by external electric fields in self-assembled quantum dots and rings

2007

We have carried out continuous wave and time resolved photoluminescence experiments in self-assembled In(Ga)As quantum dots and quantum rings embedded in field effect structure devices. In both kinds of nanostructures, we find a noticeable increase of the exciton radiative lifetime with the external voltage bias that must be attributed to the field-induced polarizability of the confined electron hole pair. The interplay between the exciton radiative recombination and the electronic carrier tunneling in the presence of a stationary electric field is therefore investigated and compared with a numerical calculation based on the effective mass approximation.

III-V semiconductorsOscillator strengthRadiative lifetimesTime resolved spectraTunnellingSelf assembledCondensed Matter::Materials ScienceGallium arsenideIndium compoundsElectric fieldQuantum mechanicsSemiconductor quantum dotsNetwork of excellenceEuropean commissionPhotoluminescenceQuantum tunnellingPhysicsSelf-assemblyCondensed Matter::Mesoscopic Systems and Quantum Hall EffectCondensed Matter PhysicsElectronic Optical and Magnetic MaterialsQuantum dotEffective massElectron hole recombinationElectron-hole recombinationPhysical Review B
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Correlation between optical properties and barrier composition in InxGa1−xP/GaAs quantum wells

1998

9 páginas, 11 figuras.

III-V semiconductorsPhotoluminescenceMaterials scienceBand gapExcitonAlloyGeneral Physics and Astronomyengineering.materialGallium arsenideSpectral line broadeningchemistry.chemical_compoundCondensed Matter::Materials ScienceGallium arsenideIndium compounds:FÍSICA [UNESCO]Optical constantsInterface structureFluctuationsSemiconductor quantum wellsPhotoluminescenceQuantum wellCondensed matter physicsCondensed Matter::OtherGallium compoundsUNESCO::FÍSICAHeterojunctionInterface statesCondensed Matter::Mesoscopic Systems and Quantum Hall EffectStoichiometryEnergy gapchemistryIndium compounds ; Gallium compounds ; III-V semiconductors ; Gallium arsenide ; Semiconductor quantum wells ; Interface structure ; Photoluminescence ; Excitons ; Interface states ; Fluctuations ; Stoichiometry ; Spectral line broadening ; Energy gap ; Optical constantsengineeringExcitonsMolecular beam epitaxy
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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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