Search results for "DOP"

showing 10 items of 4870 documents

Photoluminescence of neodymium and erbium doped NaLaF4 material

2013

Abstract In the course of this research several NaLaF 4 samples doped with different Er 3+ and Nd 3+ concentrations have been synthesized. For these samples photoluminescence spectra, kinetics and excitation spectra have been measured. It has been found that when samples containing Nd 3+ and Er 3+ impurities are excited in specific Nd 3+ bands not only Nd 3+ but also Er 3+ luminescence bands appear. The studies of the decay kinetics show that there is an energy transfer from Nd 3+ to Er 3+ , moreover “green” and “red” Er 3+ luminescence bands appear as result of two different energy transfer mechanisms. In addition, photoluminescence processes in Nd 3+ ions are investigated. Based on the ob…

RadiationPhotoluminescenceMaterials scienceDopingAnalytical chemistrychemistry.chemical_elementNeodymiumIonErbiumchemistryImpurityExcited stateLuminescenceInstrumentationRadiation Measurements
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Tomography of the SN 1987A ejecta and AGN core-shifts with high-precision astrometry

2017

Esta tesis trata dos temas muy distintos: (1) el estudio de las estructuras y movimientos propios de los chorros de los núcleos activos de galaxias (AGN) que componen la muestra S5 del casquete polar, por medio de astrometría global de alta precisión con la técnica de interferometría de muy larga base (VLBI); y (2) la reconstrucción tomográfica (i.e., 3D) de la emisión molecular de la parte interna de la supernova SN 1987A y su comparación con modelos de explosión de supernovas. En la primera parte, presentamos el análisis astrométrico diferencial llevado a cabo para todas las fuentes de la muestra S5 del casquete polar. Se consigue aplicar por primera vez a 43 GHz la técnica de astrometría…

RadioastronomíaSupernovasAstronomía de posiciónAstrometría de alta precisiónUNESCO::ASTRONOMÍA Y ASTROFÍSICATomografía Doppler:ASTRONOMÍA Y ASTROFÍSICA [UNESCO]
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A range of pulses commonly used for human transcranial ultrasound stimulation are clearly audible.

2021

Range (music)business.industryGeneral NeuroscienceBiophysicsTranscranial ultrasound stimulationStimulationNeurosciences. Biological psychiatry. NeuropsychiatryAuditory confoundsTranscranial Magnetic StimulationTranscranial DopplerMedicineHumansNeurology (clinical)businessBiomedical engineeringRC321-571UltrasonographyBrain stimulation
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Selective quantification of humidity and ammonia by optical excitation of molecular semiconductor-doped insulator (MSDI) sensors

2015

MSDI (molecular semiconductor-doped insulator) ammonia sensors have been investigated using cyclic optical excitation as multi-signal generation method. This method enables a selective quantification of both humidity in the range of 30–70 %rh and ammonia concentration in the range of 0–30 ppm with a single sensor at room temperature.

Range (particle radiation)Ammoniachemistry.chemical_compoundMolecular semiconductorChemistryDopingAnalytical chemistryHumidityInsulator (electricity)Excitation2015 IEEE SENSORS
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Ge-doping dependence of gamma-ray induced germanium lone pair centers in Ge-doped silica

2008

We report an experimental study on the y irradiation effects in Ge-doped sol-gel silica samples doped with Ge from 10 2 up to 10 4 part per million molar. The samples were exposed to the radiation generated by a 60 Co source up to an accumulated dose value of 10 MGy. Our data evidence that the γ irradiation significantly increases the number of Germanium Lone Pair Centers (GLPC). Such defects are induced with a concentration that depends on the Ge content of the employed material in those samples where no optical activity related to -s GLPC was detected before irradiation. Furthermore an increase of the GLPC concentration was detected also in a sample that already contains this defect after…

Range (particle radiation)DopingAnalytical chemistryParts-per notationGamma raychemistry.chemical_elementGermaniumsistemi amorfi difetti di puntoRadiationCondensed Matter PhysicsElectronic Optical and Magnetic MaterialschemistryIrradiationLone pairNuclear chemistry
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Electron-phonon heat transport in degenerate Si at low temperatures

2004

The thermal conductance between electrons and phonons in a solid state system becomes comparatively weak at sub‐Kelvin temperatures. In this work five batches of thin heavily doped silicon‐on‐insulator samples with the electron concentration in the range of 2.0–16 × 1019 cm–3 were studied. Below 1 K all the samples were in the dirty limit of the thermal electron‐phonon coupling, where the thermal phonon wavelength exceeds the electron mean free path. The heat flow between electrons and phonons is proportional to (T6e–T6ph), where Te (Tph) is the electron (phonon) temperature. The constant of proportionality of the heat flow strongly depends on the electron concentration and its magnitude is…

Range (particle radiation)Heat currentCondensed matter physicsChemistryPhononDopingphononselectron phonon couplingElectron63.20.Kr73.40.SxWavelengthThermal conductivity66.70.+fCondensed Matter::Strongly Correlated ElectronsOrder of magnitude
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Doped ZnS:Mn nanoparticles obtained by sonochemical synthesis.

2010

A study of sonochemically synthesized ZnS:Mn nanoparticles is presented. The particles prepared at low rf power (about 20 W) and room temperature coalesce to form morphologically amorphous large species (30-100 nm in diameter). As the power is increased in the range from 20 to 70 W, and the solution temperature is raised to 60 to 80 degrees C, finer particles are produced with the size ranging from 2 to 20 nm and improved crystallinity. The results indicate the dispersion of the Mn(2+) ions at near-surface sites in the particles. It is shown that the sonochemically fabricated particles approach the quality of the ones obtained by a standard chemical route and show a reasonable luminescence …

Range (particle radiation)Materials scienceMechanical EngineeringDopingNanoparticleBioengineeringNanotechnologyGeneral ChemistryIonAmorphous solidCrystallinityChemical engineeringMechanics of MaterialsGeneral Materials ScienceElectrical and Electronic EngineeringDispersion (chemistry)LuminescenceNanotechnology
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Luminescence and vacuum ultraviolet excitation spectroscopy of samarium doped SrB4O7

2020

Abstract Sm2+ and Sm3+ co-doped SrB4O7 could be utilized in several high-level optical devices and fundamental knowledge about the optical behavior of these materials benefits the development of luminescent applications. Herein, we report luminescence and its vacuum ultraviolet (VUV) excitation spectra in samarium doped SrB4O7. Both, Sm2+ and Sm3+ luminescence centers have been examined and distinguished in the emission and the excitation spectra investigated under synchrotron radiation. The contribution of either Sm2+ or Sm3+ emission lines into the emission spectra heavily depended on the excitation energy, and strong f-f transitions of both Sm2+ and Sm3+ were detected. At 10 K, a broad i…

Range (particle radiation)Materials scienceMechanical EngineeringExcitonDopingMetals and Alloyschemistry.chemical_elementSynchrotron radiation02 engineering and technology010402 general chemistry021001 nanoscience & nanotechnology01 natural sciences0104 chemical sciencesSamariumchemistryMechanics of MaterialsMaterials ChemistryEmission spectrumAtomic physics0210 nano-technologyLuminescenceExcitationJournal of Alloys and Compounds
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Dielectric properties of lithium niobate single crystals doped with gadolinium

2013

In this paper dielectric properties of LiNbO3:Gd single crystals at temperatures ~ 290–490 K at narrow frequency range (0.5–106 Hz) are presented. The influence of growth conditions was also investigated. The anomalies on dielectric plots depend on the development of the micro- and nano-domain structure.

Range (particle radiation)chemistry.chemical_compoundMaterials sciencechemistryGadoliniumDopingLithium niobateAnalytical chemistryMineralogychemistry.chemical_elementLithiumDielectricAlkali metalIOP Conference Series: Materials Science and Engineering
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Chiral Inversion of Thiolate-Protected Gold Nanoclusters via Core Reconstruction without Breaking an Au-S Bond

2019

On the basis of density functional theory computations of the well-known chiral Au38(SR)24 nanocluster and its Pd- and Ag-doped derivatives, we propose here a mechanism for chiral inversion that does not require the breaking of a metal-sulfur bond at the metal-ligand interface but features a collective rotation of the gold core. The calculated energy barriers for this mechanism for Au38 and Pd-doped Au38 are in the range of 1-1.5 eV, significantly lower than barriers involving the breakage of Au-S bonds (2.5 eV). For Ag-doped Au38, barriers for both mechanisms are similar (1.3-1.5 eV). Inversion barriers for a larger chiral Au144(SR)60 are much higher (2.5-2.8 eV). Our computed barriers are…

Range (particle radiation)ta114ChemistryDopingchiral inversionnanoclustersGeneral Chemistry010402 general chemistry01 natural sciencesBiochemistryInversion (discrete mathematics)CatalysisArticle0104 chemical sciencesNanoclustersMetalColloid and Surface ChemistryEnantiopure drugChemical physicsvisual_artvisual_art.visual_art_mediumDensity functional theorynanohiukkasetRacemizationJournal of the American Chemical Society
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