Search results for "shell model"

showing 10 items of 146 documents

The neutron-rich Mg isotopes: first results from MINIBALL at REX-ISOLDE

2004

After the successful commissioning of the Radioactive beam EXperiment (REX) at ISOLDE (CERN) in 2002, first physics experiments were performed in 2003 which focussed on the neutron-rich Mg isotopes in the vicinity of the “island of inversion”. After introducing the REX facility and the modern γ spectrometer MINIBALL first preliminary results will be presented showing the high potential and physics opportunities offered by this new radioactive beam facility.

PhysicsNuclear and High Energy PhysicsLarge Hadron ColliderIsotopeSpectrometer010308 nuclear & particles physicsPhysics::Instrumentation and DetectorsSHELL model[PHYS.NEXP]Physics [physics]/Nuclear Experiment [nucl-ex]01 natural sciencesNuclear physics0103 physical sciencesPhysics::Accelerator PhysicsNeutron010306 general physicsNuclear ExperimentHigh potentialRadioactive beam
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Second-forbidden nonunique $$\beta ^-$$ decays of $$^{59,60}$$Fe:possible candidates for $$g_{\mathrm{A}}$$ sensitive electron spectral-shape measure…

2021

In this work, we present a theoretical study of the electron spectral shapes for the second-forbidden nonunique $\beta^-$-decay transitions $^{59}\textrm{Fe}(3/2^-)\to\,^{59}\textrm{Co}(7/2^-)$ and $^{60}\textrm{Fe}(0^+)\to\,^{60}\textrm{Co}(2^+)$ in the framework of the nuclear shell model. We have computed the involved wave functions by carrying out a complete $0\hbar\omega$ calculation in the full $fp$ model space using the KB3G and GXPF1A effective interactions. When compared with the available data, these interactions predict the low-energy spectra and electromagnetic properties of the involved nuclei quite successfully. This success paves the way for the computations of the $\beta$-de…

PhysicsNuclear and High Energy PhysicsNuclear Theory010308 nuclear & particles physicsHadronNuclear shell modelElectronSpace (mathematics)Coupling (probability)01 natural sciences7. Clean energyOmegaSpectral line0103 physical sciencesAtomic physics010306 general physicsWave functionThe European Physical Journal A
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Gamow-Teller decay ofZn80: Shell structure and astrophysical implications

1988

Gamow-Teller \ensuremath{\beta} decay of $^{80}\mathrm{Zn}$ to levels in $^{80}\mathrm{Ga}$ has been calculated from a random-phase-approximation shell model with Nilsson model wave functions. The predicted features are compared to existing experimental results. Gross \ensuremath{\beta}-decay properties as well as quasiparticle structure indicate shape coexistence for $^{80}\mathrm{Ga}$. This result implies a rather rapid weakening of the shell strength far from \ensuremath{\beta} stability above $_{28}^{78}\mathrm{Ni}_{50}$. The nuclear properties of $^{80}\mathrm{Zn}$ as an astrophysical ``waiting-point'' nucleus suggest that the r-process scenario which is responsible for the solar r abu…

PhysicsNuclear and High Energy PhysicsNuclear TheorySHELL modelShell (structure)QuasiparticleBeta (velocity)Atomic physicsWave functionPhysical Review C
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Gamow-Teller transitions in theA=40isoquintet of relevance for neutrino captures inAr40

2014

Background: The Gamow-Teller response of $^{40}\mathrm{Ar}$ is important for the use of liquid argon as a medium for neutrino detection. An ambiguity about the Gamow-Teller strength for the excitation of ${1}^{+}$ states at 2290 and 2730 keV in $^{40}\mathrm{K}$ results in a significant uncertainty for neutrino capture rates. This ambiguity is caused by the large discrepancy observed between strengths extracted from $^{40}\mathrm{Ar}$($p$, $n$) charge-exchange data and the transition strengths for the analog transitions studied in the $\ensuremath{\beta}$ decay of $^{40}\mathrm{Ti}$.Purpose: This study was aimed at resolving the ambiguity between the results from the $^{40}\mathrm{Ar}$($p$,…

PhysicsNuclear and High Energy PhysicsParticle physicsAmplitudeSHELL modelLiquid argonNeutrinoBorn approximationEnergy (signal processing)ExcitationNeutrino scatteringPhysical Review C
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Pionic decay of Lambda Hypernuclei in a Continuum Shell Model

2002

We evaluate pionic decay widths of Lambda hypernuclei using a shell model for, both the nuclear bound and the continuum nucleon wave functions in the final state, and distorted waves for the outgoing pion. An excellent agreement with the recent KEK measurement of $\pi^-$-decay widths of $^{12}_\Lambda$C and $^{28}_\Lambda$Si is found. Besides, results for $^{56}_\Lambda$Fe are consistent with the existing upper bound.

PhysicsNuclear and High Energy PhysicsParticle physicsNuclear TheorySHELL modelNuclear TheoryFísicaFOS: Physical sciencesState (functional analysis)LambdaUpper and lower boundsNuclear Theory (nucl-th)PionHigh Energy Physics::ExperimentContinuum (set theory)Atomic physicsNucleonWave functionNuclear Experiment
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In-beam spectroscopy at the proton-drip line. First observation of excited states in 106Sb and 107Sb

1994

Neutron deficient nuclei close to Sn-100 have been investigated in-beam using the NORDBALL detector array. A target of Fe-54 was bombarded with a beam of Ni-58 at 270 MeV. Evaporation residues were identified by detecting protons and alpha particles in a 4 pi charged particle multi-detector set-up and neutrons in a 1 pi neutron detector wall in coincidence with gamma rays. Excited states of the proton drip line nucleus Sb-106 and of Sb-107 were identified for the first time. The yrast level schemes constructed from gamma-gamma-particle coincidence and gamma-gamma angular correlation analysis are presented and discussed within the framework of the nuclear shell model.

PhysicsNuclear and High Energy PhysicsProtonAstrophysics::High Energy Astrophysical PhenomenaYrastNuclear TheoryGamma rayNuclear shell modelAlpha particleCharged particleNeutron detectionNeutronAtomic physicsNuclear ExperimentPhysics Letters B
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Identification of low-lying proton-based intruder states in189–193Pb

2002

Low-lying proton-based intruder states have been observed in the odd-mass isotopes Pb-189,Pb-191,Pb-193 in experiments at the RITU gas-filled recoil separator. The identification has been performed ...

PhysicsNuclear and High Energy PhysicsProtonIsotope010308 nuclear & particles physicsSHELL modelNuclear structure01 natural sciencesRecoil separatorNuclear physicsExcited state0103 physical sciencesAlpha decayAtomic physicsNuclear Experiment010306 general physicsRadioactive decayPhysical Review C
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High spin shell model excitations in149Gd

1981

The high spin level structure of the three-neutron nucleus149Gd has been investigated by in-beamγ-ray and electron spectroscopy with (α, xn) reactions. The observed levels are characterized as members of the shell model multipletsνf 7 2/3 ,νh 9/2 f 7 2/2 ,νf 7 2/3 ×3−,νh 9/2 f 7 2/2 ×3−, and tentativelyνf 7 2/3 ×(3−)2. The energies of theν f 7 2/3 states agree only moderately with those calculated using empirical two-nucleon interactions taken from148Gd, which indicates the importance of long range contributions already atN=85.

PhysicsNuclear and High Energy PhysicsRange (particle radiation)SHELL modelNuclear fusionLevel structureAtomic physicsSpin (physics)Electron spectroscopyZeitschrift f�r Physik A: Atoms and Nuclei
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The 235 ns 9+ isomer in 63 148 Eu85

1981

From (p, xn) in-beamγ-ray and electron measurements aT1/2=235(14) ns isomer at 720 keV was identified in63148Eu85 and the levels populated in its decay have been characterized. The results determineIπ=9+ for the isomeric state, and we assign it as the (πh11/2j0−2ν f72/3)9+ shell model state, analogous to the configuration of the 235 μs isomer in63146Eu83.

PhysicsNuclear and High Energy PhysicsSHELL modelNuclear fusionElectronState (functional analysis)Atomic physicsZeitschrift f�r Physik A Atoms and Nuclei
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Medium-spin levels in the N=83 nucleus147Gd

1983

Levels of theN=83 nucleus147Gd have been investigated by methods of in-beamγ-ray and conversion electron spectroscopy using the147Sm(3He, 3n) and144Sm(α, n) reactions. Sixteen new low- and medium-spin levels have been observed in147Gd. We have located six members of thevf7/2×3− particle-octupole septuplet and several neutron single-particle states in147Gd. The levels of147Gd are discussed on the basis of the spherical shell model.

PhysicsNuclear and High Energy PhysicsSHELL modelNuclear fusionElementary particleNeutronAtomic physicsSpin (physics)SpectroscopyElectron spectroscopySpherical shellZeitschrift f�r Physik A Atoms and Nuclei
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