Search results for "HYPERFINE"

showing 10 items of 428 documents

Isomer separation of Cu and Cu with a resonance ionization laser ion source

2000

Abstract Radioactive copper isotopes were ionized with the resonance ionization laser ion source (RILIS) at the on-line isotope separator ISOLDE (CERN). Using the different hyperfine structure in the 3d10 4s  2 S1/2 – 3d10 4p  2 P01/2 transition the low- and high-spin isomers of 70 Cu were selectively enhanced by tuning the laser wavelength. The light was provided by a narrow-bandwidth dye laser pumped by copper vapor lasers (CVL) and frequency doubled in a BBO crystal. The ground state to isomeric state intensity ratio could be varied by a factor of 30, allowing to assign gamma transitions unambiguously to the decay of the individual isomers. It is shown that the method can also be used to…

Nuclear and High Energy PhysicsDye laserIsotopes of copperChemistryAnalytical chemistryPhysics::OpticsLaserIon sourcelaw.inventionlawIonizationPhysics::Atomic PhysicsAtomic physicsGround stateAtomic vapor laser isotope separationInstrumentationHyperfine structure
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Changes in nuclear structure along the Mn isotopic chain studied via charge radii

2016

The hyperfine spectra of $^{51,53-64}$Mn were measured in two experimental runs using collinear laser spectroscopy at ISOLDE, CERN. Laser spectroscopy was performed on the atomic $3d^5\ 4s^2\ ^{6}\text{S}_{5/2}\rightarrow 3d^5\ 4s4p\ ^{6}\text{P}_{3/2}$ and ionic $3d^5\ 4s\ ^{5}\text{S}_2 \rightarrow 3d^5\ 4p\ ^{5}\text{P}_3$ transitions, yielding two sets of isotope shifts. The mass and field shift factors for both transitions have been calculated in the multiconfiguration Dirac-Fock framework and were combined with a King plot analysis in order to obtain a consistent set of mean-square charge radii which, together with earlier work on neutron-deficient Mn, allow the study of nuclear struc…

Nuclear and High Energy PhysicsField (physics)N=28FOS: Physical sciences114 Physical sciences01 natural sciencesSpectral line0103 physical sciencesPROGRAMNuclear Physics - ExperimentNeutronNuclear Experiment (nucl-ex)LASER SPECTROSCOPY010306 general physicsSpectroscopyCALCIUM ISOTOPESNuclear ExperimentHyperfine structureisotopesPhysicsisotoopitta114010308 nuclear & particles physicsNuclear structureSHIFTShyperfine spectraOrder (ring theory)Charge (physics)mangaaniQUADRUPOLE-MOMENTSnuclear structuremanganeseSHELL-MODELlaser spectroscopyNEUTRONPräzisionsexperimente - Abteilung BlaumAtomic physicsPhysical Review C
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New developments of the in-source spectroscopy method at RILIS/ISOLDE

2013

At the CERN ISOLDE facility, long isotope chains of many elements are produced by proton-induced reactions in target materials such as uranium carbide. The Resonance Ionization Laser Ion Source (RILIS) is an efficient and selective means of ionizing the reaction products to produce an ion beam of a chosen isotope. Coupling the RILIS with modern ion detection techniques enables highly sensitive studies of nuclear properties (spins, electromagnetic moments and charge radii) along an isotope chain, provided that the isotope shifts and hyperfine structure splitting of the atomic transitions can be resolved. At ISOLDE the campaign to measure the systematics of isotopes in the lead region (Pb, Bi…

Nuclear and High Energy PhysicsIon beamNuclear physics[PHYS.NEXP]Physics [physics]/Nuclear Experiment [nucl-ex]01 natural sciences7. Clean energyISOLTRAPIonNuclear physicsIonization0103 physical sciencesPhysics::Atomic PhysicsLaser spectroscopy010306 general physicsSpectroscopyNuclear ExperimentInstrumentationHyperfine structureRresonance laser ionization010308 nuclear & particles physicsChemistryResonanceIon sourceIsotope shiftHyperfine structureAtomic physics
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Atomic spectroscopy studies of short-lived isotopes and nuclear isomer separation with the ISOLDE RILIS

2002

The Resonance Ionization Laser Ion Source (RILIS) at the ISOLDE on-line isotope separator is based on the selective excitation of atomic transitions by tunable laser radiation. Ion beams of isotopes of 20 elements have been produced using the RILIS setup. Together with the mass separator and a particle detection system it represents a tool for high-sensitive laser spectroscopy of short-lived isotopes. By applying narrow-bandwidth lasers for the RILIS one can study isotope shifts (IS) and hyperfine structure (HFS) of atomic optical transitions. Such measurements are capable of providing data on nuclear charge radii, spins and magnetic moments of exotic nuclides far from stability. Although t…

Nuclear and High Energy PhysicsIsotopeChemistryAtomic spectroscopyNuclear isomerAccelerators and Storage RingsIon sourceNuclidePhysics::Atomic PhysicsAtomic physicsSpectroscopyNuclear ExperimentInstrumentationHyperfine structureDoppler broadening
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Topics in atomic hyperfine structure and isotope shift

1976

Recent developments in atomic hyperfine structure and isotope shift are discussed under the following aspects: (i) Precise evaluation of nuclear moments and isotopic change of nuclear charge radii by quantitative computation of atomic structure or by calibration of the atomic constants through results from electronic and mesic X-ray spectroscopy. (ii) How to apply spectroscopic methods to nuclei far off stability. (iii) What can be learned from a systematic investigation of long isotopic chains.

Nuclear and High Energy PhysicsIsotopeChemistryCondensed Matter PhysicsAtomic and Molecular Physics and OpticsEffective nuclear chargeIsomeric shiftIsotopic shiftPhysics::Atomic PhysicsPhysical and Theoretical ChemistryAtomic physicsNuclear ExperimentSpectroscopyHyperfine structureHyperfine Interactions
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Nuclear shape transition in neutron-deficient gold isotopes

1987

4 pages, 1 table, 4 figures.

Nuclear and High Energy PhysicsIsotopeChemistryPhotoionizationCondensed Matter PhysicsMass spectrometryAtomic and Molecular Physics and OpticsEffective nuclear chargeIonizationPhysics::Atomic and Molecular ClustersNuclear Physics - ExperimentNeutronPhysics::Atomic PhysicsIsotopes of goldPhysical and Theoretical ChemistryAtomic physicsNuclear ExperimentHyperfine structure
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On the possible determination of hyperfine anomalies by trapped ion spectroscopy

1992

Abstract Laser-microwave double-resonance techniques in radiofrequency (rf) traps and Penning traps represent a powerful tool to determine hyperfine structure splittings as well as nuclear g factors to high precision. While hyperfine structure constants have been determined in a number of cases below the 10 −10 level of precision, electronic g factors have been measured to 10 −7 and there are good prospects of obtaining similar accuracy for g l . Moreover sensitive techniques have been developed for injection of ions from outside the trap. This opens the possibility to determine hyperfine anomalies at least to the 1% level of precision for chains of unstable isotopes.

Nuclear and High Energy PhysicsIsotopeChemistryPhysics::Atomic PhysicsAtomic physicsSpectroscopyInstrumentationHyperfine structureIonNuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms
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Isotope shift and hyperfine structure measurements at the242f Am fission isomer

1996

Istope shift and hyperfine structure measurements have been performed for the242fAm fission isomer with target production rates of only a few per second. The method is based on resonance ionization spectroscopy (RIS) in a buffer gas cell with radioactive decay detection of the ionization process (RADRIS). A relative isotope shift ratioX exp=IS242f,241/ IS243,241=41.7±0.9 has been measured for the 500.02 nm transition corresponding to a nuclear parameter Λ242f,241=5.4±0.3 fm2. The analysis of the quadrupole moment based on the deformed Fermi-model of the nuclear charge distribution including second order corrections results inQ 20=38.2 ±1.4( −0.8 +0.4 )model eb. The measurement of the hyperf…

Nuclear and High Energy PhysicsIsotopeFissionChemistryCondensed Matter PhysicsAtomic and Molecular Physics and OpticsEffective nuclear chargeIsomeric shiftIsotopic shiftIonizationPhysical and Theoretical ChemistryAtomic physicsHyperfine structureRadioactive decayHyperfine Interactions
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Nuclear moments and charge radii of rare-earth isotopes studied by collinear fast-beam laser spectroscopy

1983

The collinear fast-beam laser technique is being used to measure systematically hyperfine structures and isotope shifts of unstable nuclides in the rare-earth region. This brief report gives a general survey of the results obtained for the even-Z elements64Gd,66Dy,68Er and70Yb, with emphasis on the nuclear spins and moments. They allow a rather complete mapping of the single-particle structure and the development of nuclear deformation in the N > 82 region. The spins, magnetic moments and spectroscopic quadrupole moments of159–169Yb are presented in detail.

Nuclear and High Energy PhysicsIsotopeMagnetic momentSpinsChemistryCondensed Matter PhysicsLaserAtomic and Molecular Physics and Opticslaw.inventionlawQuadrupoleNuclear Physics - ExperimentNuclidePhysical and Theoretical ChemistryAtomic physicsSpectroscopyHyperfine structure
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Optical spectroscopy using mass-separated beams: Nuclear properties of unstable indium and tin isotopes

1987

Abstract Collinear fast-beam laser-spectroscopy has been used to measure the hyperfine structure and isotope shift of several indium and tin isotopes. The related experimental techniques are described, including the preparation of mass-separated beams of neutron-deficient indium and tin isotopes at the GSI on-line mass separator following fusion-evaporation reactions. The deviation of the observed dependence of the charge radii upon the neutron number from the expected behaviour is briefly discussed.

Nuclear and High Energy PhysicsIsotopeRadiochemistrychemistry.chemical_elementCondensed Matter::Materials SciencechemistryNeutron numberIsotopes of tinPhysics::Accelerator PhysicsPhysics::Atomic PhysicsAtomic physicsNuclear ExperimentSpectroscopyInstrumentationHyperfine structureIndiumSeparator (electricity)Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms
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