Search results for "C.M.M."

showing 10 items of 1066 documents

Systematic measurements of the bohr-weisskpf effect at isolde

1992

The hyperfine anomaly gives an insight into the coupling of spin and orbital magnetic moments in the nucleus. More precisely, the nuclear magnetization is expressible through the nuclear wave functions with which is tested not only the magnetic moment operator, but also the tensor product [s×C2]1. The experiment can then be expected to be of value in testing the nuclear structure theory. The greatest value of these measurements is gained when these are made systematically over a large number of isotopes. We propose to initiate a program at ISOLDE to measure the hyperfine anomaly systematically in the heavy alkali elements. The experimental setup to achieve, in particular, a precise measurem…

PhysicsNuclear and High Energy PhysicsMagnetic momentNuclear structureCondensed Matter PhysicsAtomic and Molecular Physics and OpticsBohr modelNuclear physicsMagnetizationsymbols.namesakeNuclear magnetic momentsymbolsPhysics::Atomic PhysicsPhysical and Theoretical ChemistryAtomic physicsAnomaly (physics)Nuclear ExperimentSpin (physics)Hyperfine structureHyperfine Interactions
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Shell structure of potassium isotopes deduced from their magnetic moments

2014

\item[Background] Ground-state spins and magnetic moments are sensitive to the nuclear wave function, thus they are powerful probes to study the nuclear structure of isotopes far from stability. \item[Purpose] Extend our knowledge about the evolution of the $1/2^+$ and $3/2^+$ states for K isotopes beyond the $N = 28$ shell gap. \item[Method] High-resolution collinear laser spectroscopy on bunched atomic beams. \item[Results] From measured hyperfine structure spectra of K isotopes, nuclear spins and magnetic moments of the ground states were obtained for isotopes from $N = 19$ up to $N = 32$. In order to draw conclusions about the composition of the wave functions and the occupation of the …

PhysicsNuclear and High Energy PhysicsMagnetic momentProtonNuclear Theory010308 nuclear & particles physicsNuclear structureFOS: Physical sciences[PHYS.NEXP]Physics [physics]/Nuclear Experiment [nucl-ex]01 natural sciences7. Clean energy3. Good healthNuclear Theory (nucl-th)Atomic orbitalIsotopes of potassium0103 physical sciencesNeutronNuclear Physics - ExperimentAtomic physicsPräzisionsexperimente - Abteilung BlaumNuclear Experiment (nucl-ex)010306 general physicsGround stateHyperfine structureNuclear Experiment
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Laser-microwave spectroscopy of the hyperfine structure of 9Be for the investigation of unstable Be isotopes

1997

Abstract For an investigation concerning the nuclear magnetic moments and their distributions in the nuclei of 7,11Be, an experimental project using laser-microwave double resonance spectroscopy for trapped ions is under progress at INS. Laser cooled ion crystals consisting of a few 9Be+ ions were observed and the ground state hyperfine splitting of 9Be+ was measured with a precision of 10−5. Experiments on the unstable isotope 7Be have been started.

PhysicsNuclear and High Energy PhysicsMagnetic momentResonanceLaserIonlaw.inventionlawPhysics::Atomic PhysicsRotational spectroscopyAtomic physicsGround stateSpectroscopyHyperfine structureNuclear PhysicsNuclear Physics A
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Systematics of nuclear ground state properties inSr78–100by laser spectroscopy

1990

Hyperfine structures and isotope shifts of strontium isotopes with A=78 to A=98 and A=100 were measured by collinear fast beam laser spectroscopy. Nuclear spins, moments and changes in mean square charge radii are extracted from the data. The spins and moments of most of the odd isotopes are explained in the framework of the single particle model. The changes in mean square charge radii are compared with predictions of the droplet model and of Hartree-Fock-plus-BCS calculations. For the isotopes in the transitional regions below and above the N=50 shell closure, the inclusion of quadrupole zero point motion in the Droplet model describes part of the observed shell effect. An additional chan…

PhysicsNuclear and High Energy PhysicsMagnetic momentSpinsExcited stateQuadrupoleCharge densityPhysics::Atomic PhysicsAtomic physicsSpectroscopyGround stateHyperfine structurePhysical Review C
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Laser spectroscopy of neutron deficient zirconium isotopes

2002

The first optical measurements of the neutron deficient isotopes, 87-89Zr, and also the two long-lived isomers, 87m,89mZr, have been performed using the new technique of collinear laser spectroscopy of cooled, bunched ion beams. Nuclear mean-square charge radii, spins, magnetic moments and quadrupole moments spanning the N = 50 shell closure are reported. The \"kink\" in the charge radii trends at the neutron shell closure is the most pronounced obsd. for any element in the region. [on SciFinder (R)]

PhysicsNuclear and High Energy PhysicsMagnetic momentSpinsIsotopeNuclear TheoryQuadrupoleIsotopes of zirconiumNeutronAtomic physicsSpectroscopyIon
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Determination of nuclear spins and moments in a series of radium isotopes

1983

Abstract The first investigation of hyperfine structure in radium isotopes has enabled the determination of nuclear spins, magnetic dipole and electric quadrupole moments of the isotopes with mass numbers A = 211, 213, 221, 223, 225, 227 and 229. Isotope shifts in the mass range A = 208−232 have also been measured. These studies were carried out using the technique of on-line collinear fast beam laser spectroscopy.

PhysicsNuclear and High Energy PhysicsMagnetic momentSpinsIsotopechemistry.chemical_elementNuclear physicsRadiumDipolechemistryQuadrupoleNuclear Physics - ExperimentPhysics::Atomic PhysicsNuclear ExperimentHyperfine structureMagnetic dipole
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Spins and magnetic moments ofMn58,60,62,64ground states and isomers

2015

The odd-odd $^{54,56,58,60,62,64}\mathrm{Mn}$ isotopes ($Z=25$) were studied using bunched-beam collinear laser spectroscopy at ISOLDE, CERN. From the measured hyperfine spectra the spins and magnetic moments of Mn isotopes up to $N=39$ were extracted. The previous tentative ground state spin assignments of $^{58,60,62,64}\mathrm{Mn}$ are now firmly determined to be $I=1$ along with an $I=4$ assignment for the isomeric states in $^{58,60,62}\mathrm{Mn}$. The $I=1$ magnetic moments show a decreasing trend with increasing neutron number while the $I=4$ moments remain quite constant between $N=33$ and $N=37$. The results are compared to large-scale shell-model calculations using the GXPF1A and…

PhysicsNuclear and High Energy PhysicsMagnetic momentSpinsNeutron numberNeutronAtomic physicsNuclear ExperimentGround stateSpin (physics)7. Clean energyHyperfine structureResonance (particle physics)Physical Review C
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Laser spectroscopy investigation of the nuclear moments and radii of lutetium isotopes

1998

Collinear laser spectroscopy experiments in the LuI transition $5d6s\!^{2} \; ^{2}\!D_{3/2} \rightarrow 5d6s6p \; ^{2}\!D_{3/2}$ were performed on all lutetium isotopes in the range of $^{161-179}$Lu. The nuclear spins, magnetic moments and quadrupole moments were determined from the hyperfine structures observed for 19 ground states and 11 isomers. Variations in the mean square charge radii as a function of neutron number were obtained from the isotope shifts. These data considerably extend the systematics of the properties of nuclei in the upper rare-earth region. A particular feature is the appearance of high-spin and low-spin ground states and isomeric states in the vicinity of the stab…

PhysicsNuclear and High Energy PhysicsMagnetic momentSpinschemistry.chemical_elementLutetiumchemistryNeutron numberQuadrupoleNuclear Physics - ExperimentNeutronAtomic physicsSpectroscopyHyperfine structure
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Collinear laser spectroscopy on108g, 108m In using an ion source with bunched beam release

1986

The hyperfine structure and isotope shift of108gIn and108mIn have been investigated by means of collinear fast-beam laser spectroscopy in the resonance line atλ=451 nm. The indium isotopes were prepared at the GSI on-line mass separator following a fusion evaporation reaction. For the first time, a FEBIAD ion source with bunched release of indium was used. Magnetic dipole moments, electric quadrupole moments and isotope shifts were determined. The present results lead us to assign the spinI=2 to the108In (T 1/2=40 min) state. Spins and moments are discussed in the framework of thejj-coupling model.

PhysicsNuclear and High Energy PhysicsMagnetic momentchemistry.chemical_elementIon sourcechemistryQuadrupoleNuclear fusionPhysics::Atomic PhysicsAtomic physicsNuclear ExperimentSpectroscopyMagnetic dipoleHyperfine structureIndiumZeitschrift f�r Physik A Atomic Nuclei
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Magnetic dipole moments near 132Sn: new measurement on 135I by NMR/ON

1998

Abstract On-line low temperature nuclear orientation (OLNO) experiments have been performed on the isotope 135 I using the technique of nuclear magnetic resonance on oriented nuclei (NMR/ON). The magnetic moment of the 7 2 + ground state has been measured to be μ( 7 2 + 135 I ) = 2.940(2) μ N , thereby extending the known data on these states in odd- A I isotopes up to the neutron shell closure at N = 82. Shell-model calculations have been performed for the magnetic moments of 7 2 + states in the N = 82 isotones using free-nucleon and effective g -factors. The effective g -factors are obtained from a perturbation calculation that includes corrections for core polarisation and meson-exchange…

PhysicsNuclear and High Energy PhysicsMagnetizationMagnetic energyMagnetic momentNeutron magnetic momentProton magnetic momentNuclear TheoryNuclear magnetic momentAtomic physicsNuclear ExperimentMagnetic dipoleElectron magnetic dipole momentNuclear Physics A
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