Search results for " BERYLLIUM"

showing 8 items of 8 documents

Assessment for the mean value total dressing method: Comparison with coupled cluster including triples methods for BF, NO+, CN+, C2, BeO, NH3, CH2, H…

1997

Limited previous experience with the mean value total dressing (MVTD) method had shown that MVTD energies for closed shell systems are generally better than CCSD(T) ones compared to FCI. The method, previously published as total dressing 2′(td-2′), is based on the single reference intermediate Hamiltonian theory. It is not a CC method but deals in a great part with the same physical effects that CC methods that incorporate amplitudes of triples such as CCSDT or its CCSDT-1n approaches. A number of test calculations comparing to diverse CC methods, as well as FCI and experiment when available, have been performed. The tests concern equilibrium energies in NH3 and CH2, equilibrium energies an…

Carbon compoundsGeneral Physics and AstronomyBoron compounds ; Nitrogen compounds ; Water ; Ammonia ; Ozone ; Organic compounds ; Carbon compounds ; Beryllium compounds ; Hydrogen compounds ; Silicon compounds ; Lithium ; Lithium compounds ; Carbon ; Neon compounds ; Coupled cluster calculations ; Dissociation ; Dissociation energies ; Positive ionsLithiumDissociation (chemistry)Nitrogen compoundsIonDissociation energiesOzoneCoupled cluster calculationsAmmoniaBeryllium compoundsOrganic compoundsMoleculeSilicon compoundsPhysical and Theoretical Chemistry:FÍSICA::Química física [UNESCO]Open shellChemistryNeon compoundsMean valueWaterLithium compoundsHydrogen compoundsDiatomic moleculeCarbonUNESCO::FÍSICA::Química físicaCoupled clusterAmplitudeBoron compoundsPositive ionsAtomic physicsDissociation
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High Resolution Λ Hypernuclear Spectroscopy with Electron Beams

2015

T. Gogami1 ∗, P. Achenbach2, A. Ahmidouch3, I. Albayrak4, D. Androic5, A. Asaturyan6, R. Asaturyan6, O. Ates4, P. Baturin7, R. Badui7, W. Boeglin7, J. Bono7, E. Brash8, P. Carter8, C. Chen4, A. Chiba1, E. Christy4, S. Danagoulian3, R. De Leo10, D. Doi1, M. Elaasar11, R. Ent9, Y. Fujii1, M. Fujita1, M. Furic5, M. Gabrielyan7, L. Gan12, F. Garibaldi13, D. Gaskell9, A. Gasparian3, O. Hashimoto1, T. Horn9, B. Hu14, Ed. V. Hungerford21, M. Jones9, H. Kanda1, M. Kaneta1, S. Kato19, M. Kawai1, D. Kawama1, H. Khanal7, M. Kohl4, A. Liyanage4, W. Luo14, K. Maeda1, A. Margaryan6, P. Markowitz7, T. Maruta1, A. Matsumura1, V. Maxwell7, A. Mkrtchyan6, H. Mkrtchyan6, S. Nagao1, S. N. Nakamura1, A. Narayan…

Nuclear physicsNuclear reactionPhysicschemistrySpectrometerResolution (electron density)chemistry.chemical_elementElectronIsotopes of berylliumSpectroscopyHeliumSpectral lineProceedings of the 2nd International Symposium on Science at J-PARC — Unlocking the Mysteries of Life, Matter and the Universe —
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On the thermal conductivity of a single size beryllium pebble bed

2002

PEBBLE BEDS THERMAL CONDUCTIVITY BERYLLIUM
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Frequency-comb-based measurements of lithium and beryllium isotopes for nuclear structure studiesThis paper was presented at the International Confer…

2009

We report on the measurement of the 2s-3s transition frequencies in the stable lithium isotopes and 2s-2p isotope shift measurements of 7,9,10,11Be, using a femtosecond frequency comb. For the beryllium isotopes, we extract the changes in the mean-square nuclear charge radius along the isotope chain by comparison with high-precision atomic mass shift calculations. The 2s-3s transition frequency is compared with theoretical calculations, and possibilities to extract an absolute value for the nuclear charge radius of lithium isotopes are discussed.

PhysicsIsotopeIsotopes of lithiumNuclear structureGeneral Physics and Astronomychemistry.chemical_elementEffective nuclear chargeAtomic massNuclear physicsFrequency combchemistryLithiumPhysics::Atomic PhysicsNuclear ExperimentIsotopes of berylliumCanadian Journal of Physics
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New information on 12C states from the decays of 12N and 12B

2003

Abstract The properties of states in 12 C above the 3α-threshold are of high current interest for nuclear astrophysics and for the nuclear many-body problem in general. We have initiated a series of experiments aimed at elucidating this region by using the β-decays of 12 N and 12 B. By applying the ISOL method for producing these radioactive isotopes, in combination with modern segmented charged particle detectors, our approach has significant advantages over previous studies of this region.

PhysicsMany-body problemNuclear physicsNuclear and High Energy PhysicsParticle physicsIsotopeNuclear astrophysicsNuclear structureCarbon-12Nuclear ExperimentIsotopes of berylliumRadioactive decayParticle detectorNuclear Physics A
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Novel method for determination of tritium depth profiles in metallic samples

2019

Tritium accumulation in fusion reactor materials is considered a serious radiological issue, therefore a lot of effort has been concentrated on the development of radiometric techniques. A novel method, based on gradual dissolution, for the determination of the total tritium content and its depth profiles in metallic samples is demonstrated. This method allows for the measurement of tritium in metallic samples after their exposure to a hydrogen and tritium mixture, tritium containing plasma or after irradiation with neutrons resulting in tritium formation. In this method, successive layers of metal are removed using an appropriate etching agent in the controlled regime and the amount of evo…

inorganic chemicalsfusionNuclear and High Energy PhysicsMaterials scienceNuclear engineeringchemistry.chemical_elementheliumBlanket114 Physical sciences01 natural sciences010305 fluids & plasmasblanketMetalirradiated berylliumjet0103 physical sciencespolycyclic compounds010306 general physicsHeliumbreeding blanketJet (fluid)Fusiontritiumbehaviororganic chemicalshydrogen diffusiontemperatureiter-like-wallFusion powerfirst wallberylliumCondensed Matter Physicschemistryvisual_arttransportcardiovascular systemvisual_art.visual_art_mediumdepth profileTritiumBerylliumNuclear Fusion
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Growth of beryllium oxide nano-structures during thermal treatment of neutron irradiated beryllium

2015

Beryllium oxide nano-structures grown during high temperature oxidation of neutron irradiated beryllium has been investigated. Oxidation of non - irradiated and neutron irradiated beryllium was performed in differential thermal analyzer in an atmosphere of air and its mixture with helium at temperatures up to 1050°C. Structure of beryllium and its oxide was studied by the means of scanning electron microscopy. The growth of beryllium oxide nano-structures – “labyrinth type” layers and nano-rods on the inner surfaces of neutron irradiated beryllium were observed by means of Scanning Electron Microscopy. The size of the rods was 10-100 nm in diameter and up to few micrometers in length. There…

lcsh:TN1-997Materials scienceBeryllium oxideScanning electron microscopeRadiochemistrytechnology industry and agricultureOxidechemistry.chemical_elementThermal treatmentrespiratory tract diseaseschemistry.chemical_compoundchemistryberyllium beryllium oxide neutron irradiation thermal treatment nano structureGeneral Materials ScienceNeutronIrradiationBerylliumlcsh:Mining engineering. MetallurgyHeliumMaterials Science
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Plasma-wall interaction studies within the EUROfusion consortium: Progress on plasma-facing components development and qualification

2017

This work has been carried out within the framework of the EUROfusion Consortium and has received funding from the Euratom 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.

plasma-facing components ; plasma-surface interaction ; power exhaust ; particle exhaust ; tungsten ; berylliumNuclear and High Energy PhysicstungstenNuclear engineeringPlasma surface interactionparticle exhaustplasma-facing components01 natural sciences114 Physical sciences010305 fluids & plasmas0103 physical sciences:NATURAL SCIENCES:Physics [Research Subject Categories]ddc:530beryllium; particle exhaust; plasma-facing components; plasma-surface interaction; power exhaust; tungsten; Nuclear and High Energy Physics; Condensed Matter Physics010306 general physicsplasma-surface interaction;particle exhaust;tungsten;beryllium;power exhaust;plasma-facing componentspower exhaustPhysicsPlasma16. Peace & justiceberylliumCondensed Matter PhysicsInteraction studiesEnvironmental science[PHYS.PHYS.PHYS-CHEM-PH]Physics [physics]/Physics [physics]/Chemical Physics [physics.chem-ph]plasma-surface interaction
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