Search results for "Elements"

showing 10 items of 799 documents

Analysis of the Intermediate-State Contributions to Neutrinoless Double β− Decays

2016

A comprehensive analysis of the structure of the nuclear matrix elements (NMEs) of neutrinoless double beta-minus (0νβ-β-) decays to the0+ground and first excited states is performed in terms of the contributing multipole states in the intermediate nuclei of0νβ-β-transitions. We concentrate on the transitions mediated by the light (l-NMEs) Majorana neutrinos. As nuclear model we use the proton-neutron quasiparticle random-phase approximation (pnQRPA) with a realistic two-nucleon interaction based on the Bonn one-boson-exchangeGmatrix. In the computations we include the appropriate short-range correlations, nucleon form factors, and higher-order nucleonic weak currents and restore the isospi…

Nuclear and High Energy PhysicsParticle physicsArticle SubjectNuclear Theorydouble beta decaynuclear matrix elements01 natural sciencesneutrinoless double beta decayNuclear physicsMatrix (mathematics)0103 physical sciences010306 general physicsNuclear ExperimentPhysicsta114010308 nuclear & particles physicslcsh:QC1-999MAJORANAExcited stateIsospinQuasiparticleNeutrinoMultipole expansionNucleonlcsh:PhysicsAdvances in High Energy Physics
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Limits on sterile neutrino contributions to neutrinoless double beta decay

2015

Nuclear matrix elements (NME) for exchange of arbitrary mass neutrinos are calculated in the interacting boson model (IBM-2). By combining the NME with the phase space factors (PSF), expected half-lives for neutrinos of mass ${m}_{N}$ and coupling ${U}_{eN}$ are estimated. Limits on sterile neutrinos with masses in the eV, keV, MeV-GeV, and TeV range are given.

Nuclear and High Energy PhysicsParticle physicsSterile neutrinoNuclear TheoryPhysics::Instrumentation and DetectorsSolar neutrinoAstrophysics::High Energy Astrophysical PhenomenaFOS: Physical sciencesdouble beta decaynuclear matrix elements7. Clean energydark matterNuclear Theory (nucl-th)Nuclear physicsHigh Energy Physics - Phenomenology (hep-ph)sterile neutrinosDouble beta decayNuclear ExperimentNeutrino oscillationPhysicsta114High Energy Physics::PhenomenologySolar neutrino problemCoupling (probability)High Energy Physics - PhenomenologyMeasurements of neutrino speedHigh Energy Physics::ExperimentNeutrino
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Recoil-α-fission and recoil-α–α-fission events observed in the reaction 48Ca + 243Am

2016

Products of the fusion-evaporation reaction 48Ca + 243Am were studied with the TASISpec set-up at the gas-filled separator TASCA at the GSI Helmholtzzentrum für Schwerionenforschung, Darmstadt, Germany. Amongst the detected thirty correlated α-decay chains associated with the production of element Z=115, two recoil-α-fission and five recoil-α-α-fission events were observed. The latter five chains are similar to four such events reported from experiments performed at the Dubna gas-filled separator, and three such events reported from an experiment at the Berkeley gas-filled separator. The four chains observed at the Dubna gas-filled separator were assigned to start from the 2n-evaporation ch…

Nuclear and High Energy Physicsalpha decayFissionSuperheavy elementschemistry.chemical_elementSuperheavy Elementsnucl-exAtomic01 natural sciences7. Clean energyNuclear physicsParticle and Plasma PhysicsRecoil0103 physical sciencesNuclearElement 115α decayNuclear Experiment010306 general physicsUnunpentiumSpontaneous fissionPhysicsQuantum PhysicsUup010308 nuclear & particles physicsSpontaneous fissionMolecularNuclear & Particles PhysicsSuperheavy elementchemistryDecay chainAlpha decayAstronomical and Space SciencesExcitationNuclear Physics A
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Observation of Collisional De-Excitation Phenomena in Plutonium

2022

Proceedings for the "virtual Workshop on the Atomic Structure of Actinides & Related Topics" conference submitted to the special issue of Atoms "Atomic Structure of the Heaviest Elements". A program of research towards the high-resolution optical spectroscopy of actinide elements for the study of fundamental nuclear structure is currently ongoing at the IGISOL facility of the University of Jyväskylä. One aspect of this work is the development of a gas-cell-based actinide laser ion source using filament-based dispensers of long-lived actinide isotopes. We have observed prominent phenomena in the resonant laser ionization process specific to the gaseous envir…

Nuclear and High Energy Physicscollisional de-excitationplutoniumactinidetutkimuslaitteetgas cellCondensed Matter PhysicsAtomic and Molecular Physics and Opticsgas-cellcollisional de-excitation; actinide elements; resonance laser ionization; gas cellresonance laser ionizationlaser resonance ionizationPhysics::Atomic Physicsactinide elementsNuclear ExperimentydinfysiikkaAtoms
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A Progress Report on Laser Resonance Chromatography

2022

Atoms 10(3), 87 (2022). doi:10.3390/atoms10030087

Nuclear and High Energy Physicsddc:530Condensed Matter Physicslaser spectroscopy; superheavy elements; laser resonance chromatography530Atomic and Molecular Physics and Optics
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Production and study of chemical properties of superheavy elements

2019

Abstract Some highlight examples on the study of production and chemical properties of heaviest elements carried out mostly at GSI Darmstadt are presented. They focus on the production of some of the heaviest known elements (114Fl, 115Mc, and 117Mc), studies of non-fusion reactions, and on chemical studies of 114Fl. This is the heaviest element, for which chemical studies have been performed to date.

Nuclear physics010308 nuclear & particles physicsChemistry0103 physical sciencesProduction (economics)Physical and Theoretical ChemistrySuperheavy Elements010306 general physics01 natural sciencesRadiochimica Acta
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Development of nuclear chemistry at Mainz and Darmstadt

2018

Abstract This review describes some key accomplishments of Günter Herrmann such as the establishment of the TRIGA Mark II research reactor at Mainz University, the identification of a large number of very neutron-rich fission products by fast, automated chemical separations, the study of their nuclear structure by spectroscopy with modern detection techniques, and the measurement of fission yields. After getting the nuclear chemistry group, the target laboratory, and the mass separator group established at the Gesellschaft für Schwerionenforschung (GSI) in Darmstadt, a number of large international collaborations were organized exploring the mechanism of deeply inelastic multi-nucleon trans…

Nuclear physicsChemistryNuclear spectroscopyPhysical and Theoretical ChemistrySuperheavy Elements010402 general chemistry010403 inorganic & nuclear chemistry01 natural sciences0104 chemical sciencesRadiochimica Acta
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Superheavy-element research

1979

The existence of an island of relatively stable elements beyond the present Periodic Table has been predicted by theoretical extrapolations of nuclear properties. During the past 12 years vigorous efforts have been made to discover these superheavy elements in nature and to produce them by nuclear reactions.

Nuclear physicsNuclear reactionMultidisciplinaryPeriodic table (large cells)ChemistryElement (category theory)Superheavy ElementsNature
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Search for Superheavy Elements — A Status Report

1986

A survey is given of nuclear and chemical properties in the predicted island of spherical superheavy nuclei around element 114 and of recent attempts to produce such nuclei by transfer and fusion reactions.

Nuclear physicsPhysicsNeutron numberNuclear TheoryNuclear fusionSuperheavy ElementsNuclear ExperimentStatus report
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From nuclear halos to superheavy nuclei—Perspectives for nuclear structure research at GSI

1998

Of fundamental interest is the investigation of nuclear matter at the limits of its existence in the vicinity of the driplines and in the region of the superheavy elements. The availability of unstable nuclei over large energy ranges and new experimental developments gave new impulse to nuclear structure research. Examples are the investigations of halo nuclei by nuclear decay studies combined with reactions at low and high energies, the mapping of the mass surface in large-scale direct mass measurements, and the production of heavy and superheavy nuclei. New developments such as high-current accelerators or the next generation of radioactive beam facilities will lead to further progress in…

Nuclear physicsPhysicsNuclear TheoryNuclear structureHaloNuclear drip lineSuperheavy ElementsNuclear ExperimentNuclear matterRadioactive beamRadioactive decayIl Nuovo Cimento A
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