Search results for "HIF"

showing 10 items of 1515 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 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 charge radii of molybdenum fission fragments

2009

Abstract Radioisotopes of molybdenum have been studied using laser spectroscopy techniques at the IGISOL facility, University of Jyvaskyla. Differences in nuclear charge radii have been determined for neutron deficient isotopes 90,91Mo and neutron rich isotopes 102–106,108Mo (and all stable isotopes). A smooth transition in the mean square charge radii is observed as the neutron number increases with no sudden shape change observed in the region around N = 60 . As N increases, the nuclear deformation appears to go beyond a maximum and a fall off at N = 66 is observed. The magnetic moments of the odd isotopes 91,103,105Mo are also determined.

PhysicsNuclear and High Energy PhysicsIsotopeStable isotope ratioIsotopes of molybdenumEffective nuclear chargeIsotopes of nitrogenNuclear physicsIsotope shiftNeutron numberIsotopes of xenonNeutronNuclear ExperimentNuclear charge radiusPhysics Letters B
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Muon Knight shift studies of the valence transition in Ce0�74Th0�26

1981

PhysicsNuclear and High Energy PhysicsMuonValence (chemistry)Condensed matter physicsKnight shiftPhysical and Theoretical ChemistryCondensed Matter PhysicsAtomic and Molecular Physics and OpticsHyperfine Interactions
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Laser spectroscopy of francium isotopes at the borders of the region of reflection asymmetry

2014

The magnetic dipole moments and changes in mean-square charge radii of the neutron-rich $^{218m,219,229,231}\text{Fr}$ isotopes were measured with the newly-installed Collinear Resonance Ionization Spectroscopy (CRIS) beam line at ISOLDE, CERN, probing the $7s~^{2}S_{1/2}$ to $8p~^{2}P_{3/2}$ atomic transition. The $\delta\langle r^{2}\rangle^{A,221}$ values for $^{218m,219}\text{Fr}$ and $^{229,231}\text{Fr}$ follow the observed increasing slope of the charge radii beyond $N~=~126$. The charge radii odd-even staggering in this neutron-rich region is discussed, showing that $^{220}\text{Fr}$ has a weakly inverted odd-even staggering while $^{228}\text{Fr}$ has normal staggering. This sugges…

PhysicsNuclear and High Energy PhysicsNUCLEAR MOMENTS 218m219229231Fr; measured hyperfine spectra isotope shifts; deduced charge radii nuclear magnetic moments nuclear g factors. Comparison with available data.Isotopemedia_common.quotation_subjectFOS: Physical scienceschemistry.chemical_elementCharge (physics)[PHYS.NEXP]Physics [physics]/Nuclear Experiment [nucl-ex]nucl-exAsymmetryFranciumNuclear physicschemistryNuclear Experiment (nucl-ex)Atomic physicsGround stateSpin (physics)SpectroscopyNuclear ExperimentMagnetic dipoleRADIOACTIVITY 218mFr measured decay products Ea; deduced T1/2.media_common
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Ab initio calculation of nuclear structure corrections in muonic atoms

2018

The measurement of the Lamb shift in muonic hydrogen and the subsequent emergence of the proton-radius puzzle have motivated an experimental campaign devoted to measuring the Lamb shift in other light muonic atoms, such as muonic deuterium and helium. For these systems it has been shown that two-photon exchange nuclear structure corrections are the largest source of uncertainty and consequently the bottleneck for exploiting the experimental precision to extract the nuclear charge radius. Utilizing techniques and methods developed to study electromagnetic reactions in light nuclei, recent calculations of nuclear structure corrections to the muonic Lamb shift have reached unprecedented precis…

PhysicsNuclear and High Energy PhysicsNuclear Theory010308 nuclear & particles physicsAtomic Physics (physics.atom-ph)FOS: Physical sciences01 natural sciencesEffective nuclear charge3. Good healthLamb shiftPhysics - Atomic PhysicsNuclear physicsNuclear Theory (nucl-th)DeuteriumCharge radius0103 physical sciencesEffective field theoryPhysics::Atomic and Molecular ClustersVacuum polarizationSum rule in quantum mechanicsPhysics::Atomic Physics010306 general physicsExotic atom
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The deuteron-radius puzzle is alive: A new analysis of nuclear structure uncertainties

2018

To shed light on the deuteron radius puzzle we analyze the theoretical uncertainties of the nuclear structure corrections to the Lamb shift in muonic deuterium. We find that the discrepancy between the calculated two-photon exchange correction and the corresponding experimentally inferred value by Pohl et al. [1] remain. The present result is consistent with our previous estimate, although the discrepancy is reduced from 2.6 $\sigma$ to 2 $\sigma$. The error analysis includes statistic as well as systematic uncertainties stemming from the use of nucleon-nucleon interactions derived from chiral effective field theory at various orders. We therefore conclude that nuclear theory uncertainty is…

PhysicsNuclear and High Energy PhysicsNuclear Theory010308 nuclear & particles physicsNuclear TheoryNuclear structureFOS: Physical sciencesSigmaRadius01 natural scienceslcsh:QC1-999Lamb shiftNuclear Theory (nucl-th)Nuclear physicsDeuteriumError analysis0103 physical sciencesEffective field theory010306 general physicsNuclear ExperimentNuclear theorylcsh:PhysicsPhysics Letters B
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The RMS charge radius of the proton and Zemach moments

2010

On the basis of recent precise measurements of the electric form factor of the proton, the Zemach moments, needed as input parameters for the determination of the proton rms radius from the measurement of the Lamb shift in muonic hydrogen, are calculated. It turns out that the new moments give an uncertainty as large as the presently stated error of the recent Lamb shift measurement of Pohl et al.. De Rujula's idea of a large Zemach moment in order to reconcile the five standard deviation discrepancy between the muonic Lamb shift determination and the result of electronic experiments is shown to be in clear contradiction with experiment. Alternative explanations are touched upon.

PhysicsNuclear and High Energy PhysicsNuclear TheoryProtonElectric form factorFOS: Physical sciencesCharge densityRadiusLamb shiftNuclear Theory (nucl-th)Charge radiusQuantum electrodynamicsMoment (physics)Physics::Atomic PhysicsNuclear Experiment (nucl-ex)Atomic physicsNuclear ExperimentExotic atomPhysics Letters B
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Hyperfine structure and isotope shifts of neutron-rich138?146Cs

1979

The 6s2S1/2-7p 2P3/2 transition in138–142Cs (λ=455.5 nm) has been investigated by high-resolution collinear laser spectroscopy in a fast atomic beam. The isotopes are obtained by on-line mass separation of fission products. Nuclear moments and changes of mean-square charge radii are derived from hyperfine structure and isotope shift.

PhysicsNuclear and High Energy PhysicsNuclear fission productIsotopeIsotopic shiftNuclear fusionNeutronPhysics::Atomic PhysicsAtomic physicsNuclear ExperimentSpectroscopyAtomic vapor laser isotope separationHyperfine structureZeitschrift f�ur Physik A Atoms and Nuclei
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Die relative Isotopenlage des Os186

1962

Using three different samples of Os192, Os190 and Os186 enriched to 98.68%, 95.46%, and 61.27%, respectively, the isotopic shiftsΔν(Os192−Os190) andΔν(Os192−Os186) have been measured in four Os I-lines with a recording Fabry-Perot spectrometer. The relative isotopic position of Os186 has been found to be $$\frac{{\Delta \nu (Os^{192} - Os^{186} )}}{{\Delta \nu (Os^{192} - Os^{190} )}} = 3.52 \pm 0.03.$$

PhysicsNuclear and High Energy PhysicsNuclear magnetic resonanceSpectrometerPosition (vector)Analytical chemistryNuclear fusionSpectral shiftZeitschrift f�r Physik
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