0000000000083094

AUTHOR

A. Płochocki

showing 31 related works from this author

Excited states in Br87 populated in β decay of Se87

2019

Physics010308 nuclear & particles physicsExcited state0103 physical sciencesAtomic physics010306 general physics01 natural sciencesPhysical Review C
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First decay scheme of 113Tc and identification of 113Ru m

1998

Very neutron–rich fission products of the mass chain A=113 obtained from the IGISOL on–line mass separator have been investigated by γγ coincidence techniques and γ-spectra multiscaling. Gamma–rays following β–decay of 113Tc have been observed for the first time and a new 0.5 s isomeric state has been found in 113Ru.

PhysicsNuclear physicsNuclear and High Energy PhysicsFission productsDecay schemeAstrophysics::High Energy Astrophysical PhenomenaHadronNuclear fusionAtomic physicsNuclear ExperimentCoincidenceThe European Physical Journal A
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Penning-trap-assisted study of excitations in Br88 populated in β decay of Se88

2017

Excited levels of $^{88}\mathrm{Br}$ populated in the $\ensuremath{\beta}$ decay of $^{88}\mathrm{Se}$ have been studied by means of $\ensuremath{\beta}\ensuremath{\gamma}$ and $\ensuremath{\gamma}\ensuremath{\gamma}$ spectroscopy methods. Neutron-rich parent $^{88}\mathrm{Se}$ nuclei were produced with proton-induced fission of $^{238}\mathrm{U}$ using the Ion Guide Isotope Separator On-Line (IGISOL) method and separated from contaminants using a dipole magnet and the coupled JYFLTRAP Penning trap at the Accelerator Laboratory of the University of Jyv\"askyl\"a. The level scheme of $^{88}\mathrm{Br}$ has been constructed and $logft$ values of levels were determined. The ground-state spin o…

Physics010308 nuclear & particles physicsExcited stateSpectroscopy methods0103 physical sciencesAtomic physics010306 general physicsPenning trapSpin (physics)01 natural sciencesPhysical Review C
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Signatures of oblate deformation in the ^{111}Tc nucleus

2011

Monoisotopic samples of exotic, neutron-rich ${}^{111}$Mo nuclei, produced in the deuteron-induced fission of ${}^{238}$U and separated using the IGISOL3 isotope separator, coupled to the JYFLTRAP Penning trap, were used to perform $\ensuremath{\beta}$- and $\ensuremath{\gamma}$-coincidence spectroscopy of ${}^{111}$Tc. New excited levels in ${}^{111}$Tc populated in ${\ensuremath{\beta}}^{\ensuremath{-}}$ decay of ${}^{111}$Mo provide the first indication for an oblate deformation in the mass $A\ensuremath{\approx}110$ region. The wide spin range of levels populated in ${}^{111}$Tc following the decay of ${}^{111}$Mo indicates the existence of two $\ensuremath{\beta}$-decaying levels in ${…

PhysicsNuclear and High Energy Physicsta114010308 nuclear & particles physicsFission[PHYS.NEXP]Physics [physics]/Nuclear Experiment [nucl-ex]01 natural sciencesmedicine.anatomical_structureDouble beta decayExcited state0103 physical sciencesOblate spheroidmedicineAtomic physicsDeformation (engineering)010306 general physicsSpectroscopyNucleusSpin-½Physical Review C
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Beta decay of $^{56}$Cu

2001

AbstractThe proton-rich isotope 56 Cu was produced at the GSI On-Line Mass Separator by means ofthe 28 Si( 32 S, p3n) fusion–evaporation reaction. Its β -decay properties were studied by detecting β -delayed γ rays and protons. A half-life of 93± 3 ms was determined for 56 Cu. Compared to theprevious work, six new γ rays and three new levels were assigned to the daughter nucleus 56 Ni. Themeasured Gamow–Teller strength values for five 56 Ni levels are compared toshell-model predictions.  2001 Elsevier Science B.V. All rights reserved. PACS: 21.10.-k; 23.40.-s; 21.60.Cs; 27.40.+zKeywords: R ADIOACTIVITY 56 Cu ( β + ) [from 28 Si( 32 S, p3n)]; Measured E γ , I ; Deduced β -intensity and β -st…

PhysicsNuclear and High Energy PhysicsIsotope010308 nuclear & particles physicsChemistryRadiochemistrySHELL modelGamma rayNuclear structureAnalytical chemistry01 natural sciencesBeta decayMass separationNuclear magnetic resonancemedicine.anatomical_structure0103 physical sciencesmedicineAtomic physicsBeta (finance)010306 general physicsNucleus
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Beta decay of $^{61}$Ga

1999

The β decay of 61Ga to its mirror nucleus 61Zn has been measured for the first time by using on-line mass separation and β-delayed gamma-ray spectroscopy. The observed decay strength to the ground state implies superallowed character in accordance with the systematics of the mirror decays in the sd and fp shell. The β feedings observed to four excited states in 61Zn are consistent with earlier spin-parity assignments based on in-beam experiments. The ground-state spin and parity for 61Ga were determined to be 3/2−.

PhysicsNuclear and High Energy Physics[PHYS.NEXP] Physics [physics]/Nuclear Experiment [nucl-ex]HadronParity (physics)[PHYS.NEXP]Physics [physics]/Nuclear Experiment [nucl-ex]Beta decaymedicine.anatomical_structureExcited statemedicineNuclear fusionAtomic physicsGround stateSpectroscopyNucleus
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β decay of the nuclei 60Ga (Tz=−1), 62Ga, and 70Br (Tz=0)

2003

Physics
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Investigation of a gas catcher/ion guide system at the Warsaw cyclotron

2003

NESTER ACC; The properties of a gas-catcher/ion guide system, connected to a mass separator at the Heavy Ion Laboratory of Warsaw University, were investigated by using the α-decay recoil products 219Rn and 215Po, obtained from a 223Ra source. The “plasma effect” was studied by using a 14N beam with intensities ranging from 7 to 64 particledot operatornA, which correspond to power depositions between 1.6 dot operator 1016 and 7.2 dot operator 1017 eV/s for helium pressures of 75 and 380 hPa, respectively.

PhysicsNuclear and High Energy Physics010308 nuclear & particles physicsCyclotronSeparator (oil production)chemistry.chemical_element[PHYS.NEXP]Physics [physics]/Nuclear Experiment [nucl-ex]01 natural sciencesIonlaw.inventionRecoilchemistrylaw0103 physical sciencesHeavy ionPlasma effectAtomic physics010306 general physicsHelium
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Low-spin excitations in the 109Tc nucleus

2012

Monoisotopic samples of ${}^{109}$Mo nuclei, produced in the deuteron-induced fission of ${}^{238}$U and separated using the IGISOL mass separator coupled to a Penning trap, were used to perform $\ensuremath{\beta}$- and $\ensuremath{\gamma}$-coincidence spectroscopy of ${}^{109}$Tc. Spin and parity 5/2${}^{+}$ for the ground state of ${}^{109}$Mo, proposed earlier, are supported in the present work. Three new low-energy levels observed in ${}^{109}$Tc are interpreted as bandheads of the $\ensuremath{\pi}3/{2}^{\ensuremath{-}}$[301], $\ensuremath{\pi}5/{2}^{\ensuremath{-}}$[303], and $\ensuremath{\pi}1/{2}^{+}$[431] configurations, respectively. A further three levels observed around 0.4 Me…

Nuclear and High Energy PhysicsFissionProlate spheroid[PHYS.NEXP]Physics [physics]/Nuclear Experiment [nucl-ex]kiihdytinpohjainen fysiikka01 natural sciencesydinrakenneDouble beta decay0103 physical sciencesmedicine010306 general physicsSpectroscopynuclear spectroscopyPhysicsta114accelerator-based physics010308 nuclear & particles physicsParity (physics)medicine.anatomical_structurenuclear structureydinspektroskopiaAtomic physicsydinfysiikkaGround stateNucleusExcitation
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Decay of the neutron-rich isotope 113Ru to 113Rh

2002

The decay of neutron-rich isotope 113Ru obtained as on-line mass separated product of proton-induced fission has been investigated by γγ coincidence and spectrum multiscaling measurements. Decay schemes for both low- and high-spin isomers of 113Ru have been constructed. The level scheme of 113Rh is considerably extended. Systematics of the lowest-lying rhodium levels is smooth. The picture of shape coexistence established for neutron-rich Rh isotopes near-neutron midshell is confirmed with the observation of a K = 1/2 deformed band, with its 3/2+ state at 600 keV being the lowest-lying level and of probable 7/2+ and 5/2+ band members. A large fraction of β feeding is found to populate high-…

PhysicsNuclear and High Energy PhysicsIsotopechemistryFissionHadronchemistry.chemical_elementNuclear fusionNeutronAtomic physicsNuclear ExperimentRhodiumThe European Physical Journal A
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Total absorption spectroscopy of 58Cu decay

2001

The β decay of 58Cu has been studied by means of total absorption γ-ray spectroscopy. The β feeding to the 58Ni states has been measured, and the strength of the 58Cu(1+) →58Ni(0+) Gamow-Teller transition has been determined with improved accuracy.

PhysicsNuclear and High Energy PhysicsDecay schemeTotal absorption spectroscopyDouble beta decayHadronAnalytical chemistryNuclear fusionAtomic physicsSpectroscopyAbsorption (electromagnetic radiation)The European Physical Journal A
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Structure of115Ag studied byβ−decays of115Pd and115Pdm

2012

The excited levels of ${}^{115}$Ag have been studied via the beta decay of ${}^{115}$Pd and ${}^{115}$Pd${}^{m}$. The beta-decay schemes for both states have been considerably extended, especially the scheme following the decay of ${}^{115}$Pd${}^{m}$ which was practically unknown before this work. Transition intensities and ${\mathrm{log}}_{10}ft$ values are reported, which have been missing in the literature. A set of levels around 2 MeV has been found to be strongly populated by the beta decay of the ground state of ${}^{115}$Pd and is suggested to have a three-quasiparticle nature. The properties of excited levels have been compared with the level systematics of lighter neutron-rich sil…

PhysicsNuclear and High Energy Physics010308 nuclear & particles physicsStructure (category theory)01 natural sciencesBeta decayDouble beta decayExcited state0103 physical sciencesAtomic physicsNuclear Experiment010306 general physicsGround stateSpin-½Physical Review C
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Trap-assisted studies of odd, neutron-rich isotopes from Tc to Pd

2012

We review the present and future of trap-assisted structure studies of odd, neutron-rich Tc, Ru, Rh and Pd isotopes at the limits of present experimental techniques. These nuclei of refractory elements are produced in light-particle induced fission and filtered by their mass number with the IGISOL mass separator. Further mass separation with the JYFLTRAP Penning trap system provides a clean, monoisotopic beam perfectly suited for precise nuclear spectroscopy. Connecting the IGISOL and the JYFLTRAP facilities to the recently installed MCC30/15 cyclotron opens new prospects for post-trap spectroscopy of very exotic, neutron-rich nuclei. peerReviewed

ion trapnuclear spectroscopyMass numberNuclear and High Energy PhysicsIsotopeFissionChemistryNuclear Theoryfission fragmentsCondensed Matter PhysicsPenning trapAtomic and Molecular Physics and OpticsNuclear physicsmass separationNeutronIon trapMonoisotopic massPhysical and Theoretical ChemistryNuclear ExperimentSpectroscopyHyperfine Interactions
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Fine structure of the Gamow-Teller resonance revealed in the decay of150Ho2−isomer

2003

The $\ensuremath{\gamma}$ rays following the $72s$ ${}^{150}\mathrm{Ho}$ ${2}^{\ensuremath{-}}$ Gamow-Teller $\ensuremath{\beta}$ decay have been investigated with the CLUSTER CUBE setup, an array of six EUROBALL CLUSTER Ge detectors in close cubic geometry, providing a $\ensuremath{\gamma}$ ray detection sensitivity of $2\ifmmode\times\else\texttimes\fi{}{10}^{\ensuremath{-}5}$ per $\ensuremath{\beta}$-parent decay for $\ensuremath{\gamma}$-ray energies up to 5 MeV. The fine structure of the Gamow-Teller resonance at 4.4-MeV excitation in ${}^{150}\mathrm{Dy}$ has been studied. The resolved levels are compared with Shell Model predictions.

PhysicsNuclear and High Energy PhysicsAstrophysics::High Energy Astrophysical PhenomenaNuclear TheorySHELL modelStructure (category theory)ResonanceSensitivity (control systems)Atomic physicsNuclear ExperimentExcitationPhysical Review C
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Penning-trap-assisted study of 115Ru beta decay

2011

The beta decay of 115Ru has been studied by means of Penning-trap-assisted beta and gamma spectroscopy at the IGISOL facility. The level scheme of 115Rh has been substantially extended and compared with the level systematics of lighter rhodium isotopes. Tentative candidates for three states of the deformed K = 1/2 band have been suggested. The beta-strength distribution of the beta decay of 115Ru differs from the beta decays of 111, 113, 113mRu isotopes due to non-observation of the 3-quasiparticle states in 115Rh. The decay properties of 115Ru indicate a spin-parity of (3/2+ for its beta-decaying ground state. In addition, possible Nilsson states as well as the shape and spin transitions i…

PhysicsNuclear physicsNuclear and High Energy PhysicsDecay schemeIsotopeIsotopes of germaniumDouble beta decayGamma spectroscopyAtomic physicsPenning trapNuclear ExperimentBeta decayBeta-decay stable isobarsThe European Physical Journal A
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β−decay of the neutron-rich isotope215Pb

2013

This Brief Report reports on the first observation of the β--delayed γ decay of 215Pb, feeding states in 215Bi. The 215Pb beam was produced using resonant laser ionization and mass separated at the ISOLDE-CERN on-line mass separator. This ensured clean identification of the γ rays as belonging to the decay of 215Pb or its β-decay daughters. A half-life of 147(12) s was measured for the 215Pb β decay and a level scheme for the daughter nucleus 215Bi is proposed, resulting in an extended systematics of the excited states of the neutron-rich Bi isotopes.

PhysicsNuclear and High Energy PhysicsDecay schemeIsotope010308 nuclear & particles physicsLaser01 natural sciencesBeta decaylaw.inventionNuclear physicslawIonizationDouble beta decayExcited state0103 physical sciencesNeutronAtomic physicsNuclear Experiment010306 general physicsPhysical Review C
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Excited states inPd115populated in theβ−decay ofRh115

2010

Excited states in $^{115}\mathrm{Pd}$, populated following the ${\ensuremath{\beta}}^{\ensuremath{-}}$ decay of $^{115}\mathrm{Rh}$ have been studied by means of $\ensuremath{\gamma}$ spectroscopy after the Penning-trap station at the IGISOL facility, University of Jyv\"askyl\"a. The $1$$/$$2$${}^{+}$ spin and parity assignment of the ground state of $^{115}\mathrm{Pd}$, confirmed in this work, may indicate a transition to an oblate shape in Pd isotopes at high neutron number.

PhysicsBaryonNuclear and High Energy PhysicsIsotopes of palladiumDouble beta decayExcited stateHadronAtomic physicsNuclear ExperimentNucleonGround stateRadioactive decayPhysical Review C
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The decay of 0.57 s114Cs

1980

Fusion reactions between58Ni projectiles and58Ni target nuclei were used to produce114Cs activity, which was studied by on-line mass separation and decay spectroscopy. The obtained half-life of 0.57±0.02 s and the probability ratio of 44±3 between betadelayed proton and beta-delayed alpha emission represent data with improved precision. The absolute branching ratios for both particle decay modes were determined to be (7 ±2)×10−2 and (1.6±0.6)×10−3, respectively. These branching ratios and the shapes of particle spectra are discussed with reference to the statistical model calculations. Groundstate alpha decay of114Cs was observed with an alpha energy of 3,226±30 keV and a branching ratio of…

Nuclear physicsPhysicsNuclear and High Energy PhysicsParticle decayCluster decayDecay schemeProton decayBranching fractionNuclear fusionHigh Energy Physics::ExperimentAlpha decayAtomic physicsDecay correctZeitschrift für Physik A Atoms and Nuclei
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Decay study ofTc114with a Penning trap

2011

The level structure of $^{114}\mathrm{Ru}$ has been investigated via the $\ensuremath{\beta}$ decay of very neutron-rich $^{114}\mathrm{Tc}$ by means of Penning-trap-assisted $\ensuremath{\gamma}$ spectroscopy. The deduced $\ensuremath{\beta}$-decay scheme suggests the existence of two $\ensuremath{\beta}$-decaying states in $^{114}\mathrm{Tc}$ with ${I}^{\ensuremath{\pi}}={1}^{+}$ and $I\ensuremath{\geqslant}$ 4, with half-lives of ${t}_{1/2}({1}^{+})=90(20)$ ms and ${t}_{1/2}(I\ensuremath{\geqslant}4)=100(20)$ ms, respectively. The ${Q}_{\ensuremath{\beta}}$ value, which covers a possible mixture of two states, has been determined to be ${Q}_{\ensuremath{\beta}}=11 785(12)$ keV. The level…

PhysicsBaryonNuclear and High Energy Physicssymbols.namesakeQ valueHadronsymbolsElementary particleFermionAtomic physicsNucleonHamiltonian (quantum mechanics)Radioactive decayPhysical Review C
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First β -decay scheme of Nb107 : New insight into the low-energy levels of Mo107

2019

Monoisotopic samples of $^{107}\mathrm{Nb}$ nuclei, produced in the proton-induced fission of $^{238}\mathrm{U}$ and separated using the IGISOL mass separator coupled to a Penning trap, were used to perform $\ensuremath{\beta}$- and $\ensuremath{\gamma}$-coincidence spectroscopy of $^{107}\mathrm{Mo}$. Gamma transitions and excited levels in $^{107}\mathrm{Mo}$ were observed in $\ensuremath{\beta}$ decay for the first time. Spin and parity $1/{2}^{+}$ for the ground state of $^{107}\mathrm{Mo}$ is proposed, to replace the previous $5/{2}^{+}$ assignment. The experimental $\ensuremath{\beta}$-decay half-life of $^{107}\mathrm{Nb}$ was estimated to be $0.27\ifmmode\pm\else\textpm\fi{}0.02$ s.

PhysicsDecay scheme010308 nuclear & particles physicsFissionPenning trap01 natural sciencesLow energyExcited state0103 physical sciencesAtomic physics010306 general physicsSpin (physics)Ground stateSpectroscopyPhysical Review C
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β-decay study of150Er,152Yb, and156Yb: Candidates for a monoenergetic neutrino beam facility

2011

The beta decays of ^{150}Er, ^{152}Yb, and ^{156}Yb nuclei are investigated using the total absorption spectroscopy technique. These nuclei can be considered possible candidates for forming the beam of a monoenergetic neutrino beam facility based on the electron capture (EC) decay of radioactive nuclei. Our measurements confirm that for the cases studied, the EC decay proceeds mainly to a single state in the daughter nucleus.

PhysicsNuclear and High Energy PhysicsTotal absorption spectroscopyAbsorption spectroscopyElectron captureNuclear Theorychemistry.chemical_elementBeta decayErbiumNuclear physicsmedicine.anatomical_structurechemistryBeta (plasma physics)medicinePhysics::Accelerator PhysicsHigh Energy Physics::ExperimentAtomic physicsNuclear ExperimentNucleusBeam (structure)Physical Review C
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Excited levels in the multishaped Pd117 nucleus studied via β decay of Rh117

2018

Monoisotopic samples of exotic, neutron-rich $^{117}\mathrm{Rh}$ nuclei, produced in the proton-induced fission of $^{238}\mathrm{U}$ and separated using the IGISOL mass separator coupled to the JYFLTRAP Penning trap, were used to perform $\ensuremath{\beta}$ and $\ensuremath{\gamma}$ coincidence spectroscopy of $^{117}\mathrm{Pd}$. The spin parity of the ground state of $^{117}\mathrm{Pd}$ was determined to be $1/{2}^{+}$ and the 19.1 ms isomer at 203.2 keV was assigned a spin-parity $7/{2}^{\ensuremath{-}}$. The $^{117}\mathrm{Rh}$ ${\ensuremath{\beta}}^{\ensuremath{-}}$-decay scheme was considerably extended, and various sequences of the levels were interpreted as resulting from the prol…

Physics010308 nuclear & particles physicsFissionNuclear TheoryParity (physics)Penning trap01 natural sciencesmedicine.anatomical_structureExcited state0103 physical sciencesmedicineAtomic physicsNuclear Experiment010306 general physicsGround stateSpectroscopySpin (physics)NucleusPhysical Review C
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Beta decay of the new isotope101Sn

1995

The very neutron-deficient isotope 101Sn was produced in a 50Cr(58Ni, 2p5n) reaction and its decay properties were determined for the first time. By using chemically selective ion sources of an on-line mass separator, the energy spectrum and the half-life (3 ± 1 s) of beta-delayed protons of 101Sn were measured. These results are compared to theoretical predictions.

PhysicsDecay schemeIsotopeSeparator (oil production)Condensed Matter PhysicsBeta decayAtomic and Molecular Physics and OpticsBeta-decay stable isobarsIonNuclear physicsEnergy spectrumAtomic physicsNuclear ExperimentMathematical PhysicsPhysica Scripta
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Neutron configurations inPd113

2014

Excited states in $^{113}\mathrm{Pd}$, populated in ${\ensuremath{\beta}}^{\ensuremath{-}}$ decay of $^{113}\mathrm{Rh}$ and in spontaneous fission of $^{248}\mathrm{Cm}$ and $^{252}\mathrm{Cf}$, have been studied by means of $\ensuremath{\gamma}$ spectroscopy at the IGISOL facility of Jyv\"askyl\"a University and using large arrays of Ge detectors (Eurogam2 and Gammasphere, respectively). The position of the ${11/2}^{\ensuremath{-}}$ yrast excitation in $^{113}\mathrm{Pd}$, proposed recently at 166.1 keV by other authors, has been corrected to 98.9 keV. The decay of this level has been discussed to explain the observed transition intensities. The ${7/2}^{\ensuremath{-}}$ member of the yras…

PhysicsNuclear and High Energy PhysicsDouble beta decayYrastExcited stateNeutronGammasphereAtomic physicsSpectroscopyExcitationSpontaneous fissionPhysical Review C
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First observation of the β-decay of neutron-rich 215Pb and 218Bi by the pulsed-release technique and resonant laser ionisation

2003

The neutron-rich Tl, Pb and Bi isotopes are of exceptional interest to trace the evolution of single-particle levels away from the doubly magic 208Pb towards the neutron-rich side of the nuclear chart. While 208Pb is well understood in terms of the shell model, experimental data on the heavier isotopes is very scarce and it is far from clear to what extent the shell model is upheld [1]. Furthermore, large branchings ratios for β-delayed neutron emission are expected in this mass region, adding astrophysical interest to the subject [2].

PhysicsIsotopeNeutron emissionlawAstrophysics::High Energy Astrophysical PhenomenaIonizationNuclear TheorySHELL modelNeutronAtomic physicsNuclear ExperimentLaserlaw.invention
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Beta-decay of 56Cu

1998

Beta-decay studies of proton-rich isotopes near the doubly closed-shell nucleus 56Ni are of interest as (i) nuclei with a few nucleons outside a doubly-magic core are expected to represent comparatively simple configurations and thus be useful for testing nuclear shell-model predictions, and (ii) the large decay-energy window guarantees that a sizeable fraction of the strength of the allowed β-decay can be reached by the experiment. Moreover, nuclear structure properties of proton-rich N ~ Z isotopes are of astrophysical interest, e.g., concerning the EC cooling of supernovae and the astrophysical rp-process.

PhysicsNuclear and High Energy PhysicsSIMPLE (dark matter experiment)IsotopeNuclear TheorySHELL modelNuclear structureBeta decayNuclear physicsSupernovamedicine.anatomical_structuremedicineNuclear ExperimentNucleonNucleusPhysics Letters B
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A new pulsed release method for element selective production of neutron rich isotopes near 208Pb

1998

Abstract A new method to reduce the isobaric contamination problem for the production of neutron rich Bi, Pb and Tl nuclei at on-line mass separators, based on the pulsed release of these radioactive species, is presented. The results of a feasibility study are reported.

Nuclear and High Energy PhysicsIsotopeChemistryRadiochemistryIsobaric processNeutronContaminationInstrumentationNuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms
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New isomer and decay half-life ofRu115

2010

Exotic, neutron-rich nuclei of mass $A=115$ produced in proton-induced fission of $^{238}\mathrm{U}$ were extracted using the IGISOL mass separator. The beam of isobars was transferred to the JYFLTRAP Penning trap system for further separation to the isotopic level. Monoisotopic samples of $^{115}\mathrm{Ru}$ nuclei were used for $\ensuremath{\gamma}$and $\ensuremath{\beta}$ coincidence spectroscopy. In $^{115}\mathrm{Ru}$ we have observed excited levels, including an isomer with a half-life of 76(6) ms and ($7/{2}^{\ensuremath{-}}$) spin and parity. The first excited 61.7-keV level in $^{115}\mathrm{Ru}$ with spins and parity ($3/{2}^{+}$) may correspond to an $\mathit{oblate}$ $3/{2}^{+}$…

Nuclear reactionPhysicsNuclear and High Energy Physics010308 nuclear & particles physicsHadron01 natural sciencesDouble beta decayExcited state0103 physical sciencesIsobarAtomic physicsNuclear Experiment010306 general physicsNucleonGround stateRadioactive decayPhysical Review C
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Excited levels in the multishaped 117Pd nucleus studied via β decay of 117Rh

2018

Monoisotopic samples of exotic, neutron-rich 117Rh nuclei, produced in the proton-induced fission of 238U and separated using the IGISOL mass separator coupled to the JYFLTRAP Penning trap, were used to perform β and γ coincidence spectroscopy of 117Pd. The spin parity of the ground state of 117Pd was determined to be 1/2+ and the 19.1 ms isomer at 203.2 keV was assigned a spin-parity 7/2−. The 117Rh β−-decay scheme was considerably extended, and various sequences of the levels were interpreted as resulting from the prolate, oblate, and triaxial nuclear shapes. Some of the β− decays were considered as the allowed Gamow-Teller transitions. The experimental distribution of Gamow-Teller streng…

isotoopitrare and new isotopesNuclear Theorybeta decayNuclear Experimentisomer decaysydinfysiikkapalladiumnuclear structure and decays
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Penning-trap-assisted study of excitations in $^{88}$Br populated in β decay of $^{88}$Se

2017

Excited levels of 88Br populated in the β decay of 88Se have been studied by means of βγ and γ γ spectroscopy methods. Neutron-rich parent 88Se nuclei were produced with proton-induced fission of 238U using the Ion Guide Isotope Separator On-Line (IGISOL) method and separated from contaminants using a dipole magnet and the coupled JYFLTRAP Penning trap at the Accelerator Laboratory of the University of Jyvaskyl ¨ a. The level scheme ¨ of 88Br has been constructed and log f t values of levels were determined. The ground-state spin of 88Br is now firmly determined to be 1−. Low-energy levels in 88Br were interpreted as members of the πp3/2(νd5/2) 3, πp−1 3/2(νd5/2) 3, πf −1 5/2 (νd5/2) 3, and…

beta decay[PHYS.NEXP]Physics [physics]/Nuclear Experiment [nucl-ex]excitations
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First β-decay scheme of 107Nb : New insight into the low-energy levels of 107Mo

2019

Monoisotopic samples of 107Nb nuclei, produced in the proton-induced fission of 238U and separated using the IGISOL mass separator coupled to a Penning trap, were used to perform β- and γ-coincidence spectroscopy of 107Mo. Gamma transitions and excited levels in 107Mo were observed in β decay for the first time. Spin and parity 1/2+ for the ground state of 107Mo is proposed, to replace the previous 5/2+ assignment. The experimental β-decay half-life of 107Nb was estimated to be 0.27±0.02 s. peerReviewed

electromagnetic transitionsbeta decayydinfysiikkanuclear structure and decays
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