Search results for "Neutron temperature"

showing 10 items of 103 documents

<title>Optical properties of hydrogen-containing MgO crystal</title>

2008

The photoluminescence (PL), its excitation (PLE) and absorption spectra in ultraviolet, visible and infrared (UV-VIS-IR) regions were used to investigate the MgO single crystals irradiated by fast neutrons. It is shown that the photoluminescence band of the MgO crystals at 730 nm belongs to the hydrogen-containing complex centers V-OH-Fe3+, which are transformed during the irradiation with fast neutrons. The behavior of the PL band 730 nm after fast neutron irradiation depends on the iron-chromium concentration. It is found that the fast neutron irradiation produces the interstitial proton H+i and the Mg(OH)2 microphase.© (2008) COPYRIGHT SPIE--The International Society for Optical Engineer…

CrystalPhotoluminescenceOpticsMaterials scienceAbsorption spectroscopyProtonInfraredbusiness.industryAnalytical chemistryIrradiationLuminescencebusinessNeutron temperatureSPIE Proceedings
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Formation of complex defects in Mn c Mg 1–c O and Ni c Mg 1–c O single solid solution

2005

The results of investigation of the fast neutron irradiation and thermal treatment on absorption spectra of single solid solution of MncMg1–cO, NicMg1–cO and MgO crystals are presented. It is shown that at impurity ion concentration larger than 0.1 mass.% a probability of formation of aggregate centers consisting of more than three F+- or F-centers is small. After thermal treatment of MncMg1–cO and NicMg1–cO single solid solution irradiated by fast neutrons additional wide bands are observed. We assume that these additional bands belong to complex centers of Mn3+-VMg and Ni3+-VMg. The mechanisms of bands formation are discussed. (© 2005 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim)

CrystallographyAggregate (composite)Absorption spectroscopyImpurityChemistryAnalytical chemistryThermal treatmentIrradiationNeutron temperatureSolid solutionIonphysica status solidi (c)
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Monte Carlo simulation of energy absorbed in phenolic ESR dosimeters added with gadolinium exposed to thermal, epithermal and fast neutrons

2017

Abstract In this work analyses of the energy released per unit mass in phenolic compound exposed to neutron beams were performed with the aim of predicting the increase in dose achievable by addition of gadolinium (Gd) inside the pellets. In particular, Monte Carlo (MC) simulations were carried out for IRGANOX® 1076 phenolic compound irradiated with neutron beams with different energy spectra at various depths inside a water phantom. The addition of gadolinium increases sensitivity of phenolic ESR (electron spin resonance) dosimeters to neutrons thanks to the high gadolinium cross section for neutron capture and to the large number of secondary particles (mainly Auger and internal conversio…

Elastic scatteringNuclear and High Energy PhysicsDosimeterGadoliniumPhysics::Medical PhysicsRadiochemistrySettore FIS/01 - Fisica Sperimentaletechnology industry and agriculturechemistry.chemical_elementNeutron temperatureSettore FIS/07 - Fisica Applicata(Beni Culturali Ambientali Biol.e Medicin)030218 nuclear medicine & medical imaging03 medical and health sciencesNeutron capture0302 clinical medicineInternal conversionchemistry030220 oncology & carcinogenesisCondensed Matter::Strongly Correlated ElectronsNeutronIrradiationInstrumentationIrganox 1076 Dosimetry Neutrons ESR
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Neutron irradiation defects in gallium sulfide: Optical absorption measurements

1997

Gallium sulfide single crystals have been irradiated with different thermal neutron doses. Defects introduced by neutron irradiation turn out to be optically active, giving rise to absorption bands with energies ranging from 1.2 to 3.2 eV. Bands lying in the band-gap exhibit Gaussian shape. Their energies and widths are independent of the irradiation dose, but their intensities are proportional to it. Thermal annealing is completed in two stages, ending at around 500 and 720 K, respectively. Centers responsible for the absorption bands are proposed to be gallium-vacancy-galliuminterstitial complexes in which the distance between the vacancy (acceptor) and the interstitial (donor) determines…

Energy GapInterstitialsMaterials scienceIII-VI SemiconductorsAnnealing (metallurgy)Band gapVacancies (Crystal)Neutron EffectsUNESCO::FÍSICAGeneral Physics and AstronomyGallium Compounds ; III-VI Semiconductors ; Neutron Effects ; Defect Absorption Spectra ; Energy Gap ; Vacancies (Crystal) ; Interstitials ; Annealing ; Visible SpectraMolecular physicsAcceptorNeutron temperatureAnnealingCrystallographyCondensed Matter::Materials ScienceAbsorption bandVisible Spectra:FÍSICA [UNESCO]Vacancy defectGallium CompoundsIrradiationDefect Absorption SpectraNeutron irradiation
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New measurement of the 242Pu(n,γ) cross section at n_TOF

2016

The use of MOX fuel (mixed-oxide fuel made of UO2 and PuO2 ) in nuclear reactors allows substituting a large fraction of the enriched Uranium by Plutonium reprocessed from spent fuel. With the use of such new fuel composition rich in Pu, a better knowledge of the capture and fission cross sections of the Pu isotopes becomes very important. In particular, a new series of cross section evaluations have been recently carried out jointly by the European (JEFF) and United States (ENDF) nuclear data agencies. For the case of 242 Pu, the two only neutron capture time-of-flight measurements available, from 1973 and 1976, are not consistent with each other, which calls for a new time-of flight captu…

EngineeringIsotopes of uranium010308 nuclear & particles physicsbusiness.industryNuclear engineeringPhysicsQC1-9997. Clean energy01 natural sciencesEngineering physicsSpent nuclear fuelNeutron temperatureNeutron capture0103 physical sciencesPlutonium-242Neutron cross sectionUranium-235010306 general physicsbusinessMOX fuelEPJ Web of Conferences
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Analysis of the spatial distribution of free radicals in ammonium tartrate by pulse EPR techniques

2009

Using pulse electron paramagnetic resonance (EPR) on a series of l(+)-ammonium tartrate (AT) dosimeters exposed to radiations with different linear energy transfer (LET), we assessed the ability of pulse EPR spectroscopy to discriminate the quality of various radiation beams such as (60)Co gamma-ray photons, protons and thermal neutrons at various doses by analyzing the local radical distributions produced by the different beams. We performed two types of pulse EPR investigations: two-pulse electron spin echo decay obtained by varying the microwave power, and a double electron-electron resonance (DEER) study. Both methods provide information about the dipolar interactions among the free rad…

Free RadicalsBiophysicsAnalytical chemistryradical distribution; radiation dosimetry; ESR spectroscopyLinear energy transferElectronsRadiationTartrateRadiation Dosagelaw.inventionDiffusionchemistry.chemical_compoundlawAmmonium Tartrate by Pulse EPR TechniquesRadiology Nuclear Medicine and imagingCobalt RadioisotopesRadiometrySpectroscopyElectron paramagnetic resonanceTartratesNeutronsRadiationPulsed EPRElectron Spin Resonance SpectroscopyResonanceESR spectroscopyNeutron temperatureradiation dosimetrychemistryGamma Raysradical distributionProtons
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THE EFFECT OF GADOLINIUM ON THE ESR RESPONSE OF ALANINE AND AMMONIUM TARTRATE EXPOSED TO THERMAL NEUTRONS

2008

Many efforts have been made to develop neutron capture therapy (NCT) for cancer treatment. Among the challenges in using NCT is the characterization of the features of the mixed radiation field and of its components. In this study, we examined the enhancement of the ESR response of pellets of alanine and ammonium tartrate with gadolinium oxide exposed to a thermal neutron beam. In particular, the ESR response of these dosimeters as a function of the gadolinium content inside the dosimeter was analyzed. We found that the addition of gadolinium improves the sensitivity of both alanine and ammonium tartrate. However, the use of gadolinium involves a reduces in or abolishes tissue equivalence b…

High atomic numberHot TemperatureGadoliniumBiophysicschemistry.chemical_elementGadoliniumRadiation DosageSensitivity and SpecificityRadiology Nuclear Medicine and imagingAmmonium tartrateRadiometryTartratesAlanineNeutronsRadiationDosimeterAlanineRadiation fieldRadiochemistryElectron Spin Resonance SpectroscopyReproducibility of ResultsDose-Response Relationship RadiationNeutron temperatureSettore FIS/07 - Fisica Applicata(Beni Culturali Ambientali Biol.e Medicin)Neutron capturechemistryESR dosimetry thermal neutronsNuclear chemistry
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Fast-neutron-induced and as-grown structural defects in magnesium aluminate spinel crystals with different stoichiometry

2019

Abstract Several hole-type paramagnetic defects (a hole localized at a regular oxygen ion near charged structural defect/defects) have been revealed in fast-neutron-irradiated MgO⋅2.5Al2O3 single crystals using the EPR method. Three of them (a dominant V1 and small amount of V2 and V22) were recently revealed in a neutron-irradiated stoichiometric MgAl2O4, while a novel V4 center, ascribed to a hole in a form of O− ion nearby a complex of a magnesium vacancy and a positively charged antisite defect (V4 ≡ O–‑VMg‑Al|Mg), was created by fast neutrons only in a nonstoichiometric single crystal. The pulse annealing of the EPR signal of these centers was compared to that of radiation induced opti…

Materials scienceAnnealing (metallurgy)Astrophysics::High Energy Astrophysical Phenomena02 engineering and technologyengineering.material010402 general chemistry01 natural sciencesIonlaw.inventionInorganic ChemistryCondensed Matter::Materials ScienceParamagnetismlawVacancy defectElectrical and Electronic EngineeringPhysical and Theoretical ChemistryElectron paramagnetic resonanceSpectroscopyOrganic ChemistrySpinel021001 nanoscience & nanotechnologyAtomic and Molecular Physics and OpticsNeutron temperature0104 chemical sciencesElectronic Optical and Magnetic MaterialsCrystallographyengineering0210 nano-technologySingle crystalOptical Materials
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An on-line mass separator for fission-produced alkali isotopes

1980

Abstract The design of an on-line mass separator installed at the TRIGA reactor in Mainz is described and its performance discussed. A tungsten oven, filled with about 2 g of 235U embedded in graphite, is exposed to a flux of 1.7 × 1011 thermal neutrons (s− cm−2) near the reactor core. After diffusion out of the graphite the fission-produced alkali isotopes are surface-ionized and electromagnetically mass-separated, the resolving power being about 750. Losses during the diffusion out of the target material are discussed. Due to these losses the maximum separator efficiency is about 5%, corresponding to a source strength of about 109 particles s−1 for the most abundant isotopes. The heaviest…

Materials scienceIsotopeFissionAnalytical chemistrySeparator (oil production)chemistry.chemical_elementGeneral MedicineTungstenAlkali metalNeutron temperatureNuclear physicsNuclear reactor corechemistryGraphiteNuclear Instruments and Methods
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Influence of boron on the essential properties for new generation scintillators

2021

Abstract Cerium doped yttrium aluminum (YAG:Ce) and lutetium aluminum garnets (LuAG:Ce) are some of the most popular materials used as scintillators. While the scintillators themselves are materials that absorb and convert high-energy radiation into light. The decay time in YAG:Ce and LuAG:Ce is about 60 ns, therefore the essential task for their improvement would be to shorten it as much as possible. For this reason, in this work, the aforementioned garnets were doped with different amounts of boron. B3+ ion has a suitable neutron capture cross section and can therefore absorb gamma radiation. Because of the extremely strong absorption of thermal neutrons and the weak interaction with MeV …

Materials scienceMechanical EngineeringDopingMetals and AlloysGamma rayAnalytical chemistrychemistry.chemical_element02 engineering and technologyYttriumScintillator010402 general chemistry021001 nanoscience & nanotechnology01 natural sciencesLutetiumNeutron temperature0104 chemical sciencesCeriumchemistryMechanics of MaterialsMaterials Chemistry0210 nano-technologyBoronJournal of Alloys and Compounds
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