Search results for "Quadrupole"

showing 10 items of 460 documents

Isomeric decay spectroscopy of theBi217isotope

2014

The structure of the neutron-rich bismuth isotope 217Bi has been studied for the first time. The fragmentation of a primary 238U beam at the FRS-RISING setup at GSI was exploited to perform γ-decay spectroscopy, since μs isomeric states were expected in this nucleus. Gamma rays following the decay of a t1/2=3 μs isomer were observed, allowing one to establish the low-lying structure of 217Bi. The level energies and the reduced electric quadrupole transition probability B(E2) from the isomeric state are compared to large-scale shell-model calculations.

PhysicsNuclear and High Energy PhysicsIsotopeGamma rayIsomeric shiftmedicine.anatomical_structureFragmentation (mass spectrometry)QuadrupolemedicineGamma spectroscopyAtomic physicsNuclear ExperimentSpectroscopyNucleusPhysical Review C
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Ground-state properties of neutron-deficient platinum isotopes

1992

The hyperfine structure splitting and the isotope shift in the λ=266 nm transition of Pt isotopes within the mass range 183 ≦A≦ 198 have been determined by Resonance Ionization Mass Spectroscopy (RIMS) in combination with Pulsed-Laser Induced Desorption (PLID). The Pt isotopes were obtained at the on-line isotope separator ISOLDE-3/CERN as daugthers of the primarily produced Hg isotopes. Magnetic moments, quadrupole moments, and changes in the mean-square charge radii are deduced and compared with results of a particle-triaxial rotor model and mean field calculations. Good agreement with experimental data (including nuclear level schemes and transition probabilities) can only be obtained if…

PhysicsNuclear and High Energy PhysicsIsotopeMagnetic momentQuadrupoleNuclear fusionNeutronPhysics::Atomic PhysicsAtomic physicsNuclear ExperimentMass spectrometryGround stateHyperfine structureZeitschrift f�r Physik A Hadrons and Nuclei
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Microscopic description of even-even nuclei in the mass A = 130 region

1986

Abstract We present a systematic study of even-even nuclei in the mass A = 130 region using a microscopic nuclear structure model, in which the nuclear wave functions are approximated by linear combinations of number- and spin-projected zero-quasiparticle and two-quasipartile determinants obtained from a self-consistent Hartree-Fock-Bogoliubov mean field. With a fixed hamiltonian, being a slightly renormalized Brueckner G-matrix based on the Bonn potential the model is able to reproduce the main trends of empirical energy and electromagnetic properties of the transitional, soft nuclei in the region. The empirical nature of the crossing ( πh 11 2 ) 2 and ( vh 11 2 ) 2 superbands in Ce and Ba…

PhysicsNuclear and High Energy PhysicsIsotopeNuclear TheoryNuclear structureParity (physics)symbols.namesakeMean field theoryExcited stateQuadrupolesymbolsAtomic physicsHamiltonian (quantum mechanics)Wave functionNuclear Physics A
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Quadrupole moments and mean-square charge radii in the bismuth isotope chain

1997

Abstract Isotope shifts and hyperfine structures of the 205,206,208,210,210m,212,213 Bi isotopes have been studied on the 306.7 nm line using gas cell laser spectroscopy. The neutron-rich isotopes are the first isotones of Pb to be measured immediately above the N = 126 shell closure. The ground state quadrupole moments of the even- N isotopes increase as neutrons are added or removed from the N = 126 shell, but no corresponding increase is observed in the charge radii.

PhysicsNuclear and High Energy PhysicsIsotopeNuclear TheoryShell (structure)QuadrupoleNeutronPhysics::Atomic PhysicsAtomic physicsGround stateSpectroscopyNuclear ExperimentHyperfine structureParticle Physics - ExperimentLine (formation)
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Ground state properties of manganese isotopes across the N=28 shell closure

2010

Abstract The first optical study of the N = 28 shell closure in manganese is reported. Mean-square charge radii and quadrupole moments, obtained for ground and isomeric states in 50–56 Mn, are extracted using new calculations of atomic factors. The charge radii show a well defined shell closure at the magic number. The behaviour of the charge radii is strikingly different to that of the neutron separation energies where no shell effect can be observed. The nuclear parameters can be successfully described by large scale shell model calculations using the GXPF1A interaction.

PhysicsNuclear and High Energy PhysicsIsotopeNuclear TheoryShell (structure)chemistry.chemical_elementCharge (physics)ManganeseElectromagnetic momentsIsotope shiftchemistryQuadrupolePhysics::Atomic and Molecular ClustersNeutronAtomic physicsGround stateNuclear charge radiusMagic number (physics)Physics Letters B
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Nuclear moments and charge radii of107?111in determined by laser spectroscopy

1985

Collinear fast beam laser spectroscopy has been used to measure the hyperfine structure and isotope shift in the atomic 5s 2 5p 2 P 3/2-5s 2 6s 2 S 1/2 transition (λ=451 nm) of107–111In. Secondary beams of neutron deficient indium isotopes were prepared at the GSI on-line mass separator following fusion evaporation reactions. Magnetic dipole moments and electric quadrupole moments have been determined. The isotope shifts are discussed in terms of the change of the mean square nuclear charge radii and compared with the droplet model predictions and the deformation values calculated from the quadrupole moments.

PhysicsNuclear and High Energy PhysicsIsotopeQuadrupoleNuclear fusionNeutronPhysics::Atomic PhysicsAtomic physicsNuclear ExperimentSpectroscopyHyperfine structureMagnetic dipoleEffective nuclear chargeZeitschrift f�r Physik A Atoms and Nuclei
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Quadrupole deformed and octupole collective bands in 228Ra

1998

Spins and parities for collective states in $^{228}$Ra have been determined from conversion electron measurements with a mini-orange $\beta$-spectrometer. The fast-timing $\beta\gamma\gamma(t)$ method has been used to measure lifetimes of T$_{1/2}$=550(20) ps and 181(3) ps for the $2^{+}_{1}$ and $4^{+}_{1}$ members of the K=0$^{+}$ band, and T$_{1/2} \leqslant$ 7 ps and $\leqslant$ 6 ps for the $1^{-}_{1}$ and $3^{-}_1$ members of the K = $0^{-}$ band, respectively The quadrupole moments, $Q_{0}$ deduced from the B (E2; 2$_{1}^{+} \rightarrow 0_{1}^{+}$) and B (E2; 4$_{1}^{+} \rightarrow 2_1^{+}$) rates are in good agreement with the previously measured value and the systematics of the reg…

PhysicsNuclear and High Energy PhysicsIsotopeSpinsExcited stateQuadrupoleNuclear Physics - ExperimentElectronAtomic physicsSpin (physics)Beta decayRadioactive decayNuclear Physics A
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Nuclear moments and charge radii of bismuth isotopes

2000

Isotope shifts and hyperfine structures have been measured on the 306.7 nm line in bismuth isotopes with A = 205-210, 210m, 212 and 213 by gas cell laser spectroscopy. More precise measurements were made for the A = 207-209 isotopes in atomic beam measurements. Nuclear magnetic and quadrupole moments were deduced. A detailed comparison of the nuclear charge radii systematics has been made in the region using a King plot technique.

PhysicsNuclear and High Energy PhysicsIsotopechemistry.chemical_elementEffective nuclear chargeBismuthchemistryQuadrupolePhysics::Atomic PhysicsAtomic physicsNuclear ExperimentAtomic vapor laser isotope separationSpectroscopyHyperfine structureLine (formation)Journal of Physics G: Nuclear and Particle Physics
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Charge radii and ground state structure of lithium isotopes: Experiment and theory reexamined

2011

Changes in the nuclear charge radii of lithium isotopes were determined using a combination of precise isotope shift measurements and theoretical atomic structure calculations. We discuss the choice of the reference isotope for absolute charge radii determinations in the lithium isotopic chain and report a new value for the charge radius of ${}^{6}$Li, based on the analysis of the world scattering data. A summary of the lithium nuclear charge radii obtained in this way is presented. Additionally, new calculations in fermionic molecular dynamics for the lithium isotopes were performed. We summarize the status of the lithium nuclear charge radii, magnetic dipole and electric quadrupole moment…

PhysicsNuclear and High Energy PhysicsIsotopes of lithiumchemistry.chemical_elementCharge densityEffective nuclear chargeDipolechemistryCharge radiusQuadrupoleLithiumPhysics::Atomic PhysicsAtomic numberAtomic physicsNuclear ExperimentPhysical Review C
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Unrestricted shapes of light nuclei in the local-density approximation: Comparison with jellium clusters

1995

Abstract The shapes of light nuclei are studied within density-functional theory. The Kohn-Sham method and the local-density approximation are used. No symmetry restrictions are imposed. A parallel study is made of monovalent atomic clusters described on the jellium model. The shapes obtained for nuclei with Z = N = 2–22 show a striking similarity to those of atomic clusters of an equal number of valence electrons. Moments of inertia, when suitably normalized, are virtually identical. The calculated nuclear quadrupole moments are found insensitive to the effective interaction and in good agreement with experiment. Similar shape coexistence is established in both systems.

PhysicsNuclear and High Energy PhysicsLight nucleusSimilarity (geometry)QuadrupoleJelliumPhysics::Atomic and Molecular ClustersAtomic physicsMoment of inertiaLocal-density approximationValence electronSymmetry (physics)Nuclear PhysicsNuclear Physics A
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