Search results for "Neutron irradiation"

showing 10 items of 23 documents

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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Influence of irradiation on the switching behavior in PZT thin films

2005

Spatially nonuniform imprint behavior induced by X-ray synchrotron, electron and neutron irradiation has been investigated in sol–gel Pb(Zr,Ti)O3 thin films. The analysis of the switching current data reveals the strong influence of irradiation on the switching current shape. The obtained effects have been explained as a result of acceleration of the bulk screening process induced by irradiation. It was shown that the spatial distribution of the internal bias field is determined by the domain structure existing during irradiation. The changes in the structural characteristics during fatigue cycling have been reveled by high resolution synchrotron X-ray diffraction experiments on (1 1 1)-ori…

In situDiffractionMaterials scienceMechanical EngineeringElectronCondensed Matter PhysicsSynchrotronlaw.inventionCapacitorCrystallographyMechanics of MaterialslawGeneral Materials ScienceIrradiationThin filmComposite materialNeutron irradiationMaterials Science and Engineering: B
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Computational study of the influence of oxygen vacancies on the polarization in irradiated and annealed PLZT ceramics

2002

A physical model for the oxygen defect evolution in PLZT ceramics under neutron irradiation and annealing is proposed. The influence of the defect system on the polarization of these materials has been investigated. The influence of the La content on the material structure and the oxygen defects has been taken into account. Satisfactory agreement between the theoretically estimated oxygen defect concentration after irradiation and annealing and the experimentally determined polarization has been obtained.

Materials scienceCondensed matter physicsAnnealing (metallurgy)chemistry.chemical_elementOxygenCrystallographychemistryMaterial structurevisual_artvisual_art.visual_art_mediumIrradiationCeramicPhysics::Chemical PhysicsNeutron irradiationSPIE Proceedings
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Structure and Phase Changes in Natural and Synthetic Magnesium Aluminum Spinel

2015

Natural spinel crystals from Ural and Pamir deposits and synthetic magnesium aluminium spinel single crystals with different stoichiometry (MgO.nAl2O3 ) grown by Verneuil method were used. The photoluminescence (PL), its excitation (PLE) and optical absorption of stoichiometric and nonstoichiometric magnesium aluminium spinel crystals containing the chromium and manganese ions and defects produced by fast neutron irradiation( fluence up to 1020cm-2, E>0.1 MeV) are investigated. The broadening of R- and N-lines takes place in synthetic stoichiometric spinel. Structure of synthetic nonstoichiometric spinels (n>1) has to be more disordered, since in addition to the site exchange …

Materials sciencePhotoluminescenceMagnesiumSpinelInorganic chemistryAnalytical chemistrychemistry.chemical_elementManganeseengineering.materialChromiumchemistryAluminiumengineeringIrradiationStoichiometrymagnesium aluminium spinel; neutron irradiation; absorption and luminescence spectraEnvironment. Technology. Resources. Proceedings of the International Scientific and Practical Conference
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Production of mass-separated Erbium-169 towards the first preclinical in vitro investigations

2021

The β−-particle-emitting erbium-169 is a potential radionuclide toward therapy of metastasized cancer diseases. It can be produced in nuclear research reactors, irradiating isotopically-enriched 168Er2O3. This path, however, is not suitable for receptor-targeted radionuclide therapy, where high specific molar activities are required. In this study, an electromagnetic isotope separation technique was applied after neutron irradiation to boost the specific activity by separating 169Er from 168Er targets. The separation efficiency increased up to 0.5% using resonant laser ionization. A subsequent chemical purification process was developed as well as activity standardization of the radionuclid…

Medicine (General)Health Physics and Radiation Effectselectromagnetic isotope separationEr-169030218 nuclear medicine & medical imagingIsotope separationlaw.invention03 medical and health sciencesR5-9200302 clinical medicineErbium-169lawLASER RESONANCE IONIZATIONIonizationEr-169; activity standardization; electromagnetic isotope separation; in vitro studies; lanthanide-separation; laser resonance ionizationNeutron irradiationOriginal Researchin vitro studiesRadionuclideChemistryRadiochemistryGeneral MedicineLANTHANIDE-SEPARATIONIn vitroELECTROMAGNETIC ISOTOPE SEPARATIONER-169030220 oncology & carcinogenesisRadionuclide therapyMedicinelanthanide-separationactivity standardizationSpecific activitylaser resonance ionizationACTIVITY STANDARDIZATIONIN VITRO STUDIESFrontiers in Medicine
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Luminescence of impyrity and radiation defects in magnesium oxide irradiated by fast neutrons

2009

Abstract The photoluminescence, its excitation and absorption spectra of MgO single crystals are investigated before and after the irradiation with fast neutrons. It is shown that the fast neutron irradiation leads to the formation of two types of centers: the interstitial proton H + i and the Mg(OH) 2 microphase. From the behaviour of the photoluminescence (PL) and its excitation (PLE) spectra we suppose that the photoluminescence band at 730 nm of the MgO crystals belongs to the complex V − OH − Fe 3+ centers, which is transformed during the irradiation with fast neutrons. The obtained results allow assume that the transitionions play an important role in the migration of vacancies and in…

Neutron irradiationMaterials sciencePhotoluminescenceProtonAbsorption spectroscopyAbsorption spectraAnalytical chemistryRadiationPhysics and Astronomy(all)Neutron temperaturePhotoluminescence excitationIrradiationLuminescencePhotoluminescenceMagnesium oxidePhysics Procedia
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Investigation of hydrogen and deuterium impact on the release of tritium from two-phase lithium ceramics under reactor irradiation

2022

In the development of fusion energy, an important task is the study and improvement of tritium production technologies. In this case, one of the most promising materials for tritium generation is lithium ceramics. Considering the importance of the task, numerous studies are aimed at solving the problem of determining the parameters and mechanisms of tritium release in lithium-containing materials. This paper presents the results of a study of tritium release processes from two-phase lithium ceramics of Li$_{4}$SiO$_{4}$/Li$_{2}$TiO$_{3}$ during reactor irradiation when hydrogen and deuterium are injected into the chamber with irradiated samples. The mechanisms regularities of the tritium yi…

Neutron irradiationTechnologyTritium releaseNuclear and High Energy PhysicsNuclear Energy and EngineeringMaterials Science (miscellaneous)TK9001-9401Nuclear engineering. Atomic powerTritiumDeuteriumddc:600Two-phase lithium ceramicNuclear Materials and Energy
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Technology Impact on Neutron-Induced Effects in SDRAMs : A Comparative Study

2021

International audience; This study analyses the response of synchronous dynamic random access memories to neutron irradiation. Three different generations of the same device with different node sizes (63, 72, and 110 nm) were characterized under an atmospheric-like neutron spectrum at the ChipIr beamline in the Rutherford Appleton Laboratories, UK. The memories were tested with a reduced refresh rate to expose more single-event upsets and under similar conditions provided by a board specifically developed for this type of study in test facilities. The board has also been designed to be used as a nanosatellite payload in order to perform similar tests. The neutron-induced failures were studi…

NeutronsComputer sciencePayloadkäyttömuistitStuck Bitsneutronitmuistit (tietotekniikka)Technology impactSEERefresh rate[SPI.TRON]Engineering Sciences [physics]/ElectronicsRadiation EffectsBeamlinesäteilyfysiikkaNeutronNode (circuits)[INFO.INFO-ES]Computer Science [cs]/Embedded Systems[SPI.NANO]Engineering Sciences [physics]/Micro and nanotechnologies/MicroelectronicsSDRAMNeutron irradiationSimulationRandom accessavaruustekniikka
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Tritium release behavior of beryllium pebbles after neutron irradiation between 523 and 823K

2013

Abstract Post-irradiation tritium release from the Pebble Bed Assembly (PBA) neutron-irradiated beryllium (Be) pebbles (∅ ≈ 1 mm; the total tritium inventory 2–4 GBq/g) was investigated on annealing in He + 0.1% H 2 . Temperature ramps of 2.3 K/min followed by annealing for 1 h at 1310–1320 K resulted in complete detritiation of the PBA Be pebbles. The tritium burst release occurred after a time lag of 1–6.5 h during constant temperature anneals at 1089–1180 K, with the release time measured after reaching the annealing temperature. Tritium burst release was also observed to occur during cool down. Anneals at 1089 K for 8 h and at 1045 K for 23 h caused detritiation of the PBA Be pebbles by…

Nuclear and High Energy PhysicsAnnealing (metallurgy)Radiochemistrychemistry.chemical_elementThermal diffusivityRelease timeTritium releaseNuclear Energy and EngineeringchemistryGeneral Materials ScienceTritiumBerylliumPebbleNeutron irradiationJournal of Nuclear Materials
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Kinetics of the electronic center annealing in Al2O3 crystals

2018

Authors are greatly indebted to A. Ch. Lushchik, V. Kortov, M. Izerrouken and R.Vila for stimulating discussions. This work has been carried out within the framework of the Eurofusion Consortium and has received funding from the Euroatom research and training programme 2014–2018 under grant agreement No 633053 . The views and opinions expressed herein do not necessarily reflect those of the European Commission. The calculations were performed using facilities of the Stuttgart Supercomputer Center (project DEFTD 12939 ).

Nuclear and High Energy PhysicsMaterials scienceAnnealing (metallurgy)DimerKinetics02 engineering and technology01 natural sciencesMolecular physicsF centersRadiation defectsIonDiffusionchemistry.chemical_compound0103 physical sciencesAl2O3:NATURAL SCIENCES:Physics [Research Subject Categories]General Materials Science010306 general physicsNeutron irradiationAnnealing kineticsF2 centers021001 nanoscience & nanotechnologyRecombinationNuclear Energy and Engineeringchemistry0210 nano-technologyRecombination
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