Search results for "ISOLTRAP"

showing 10 items of 64 documents

Penning-trap mass measurements of neutron-deficient Rb and Sr isotopes

1993

Abstract The Penning-trap mass spectrometer ISOLTRAP installed at the on-line mass separator ISOLDE 2 at CERN has been used for mass determination of 75–87 Rb and 78–83,87 Sr. Ions are captured in a Penning trap and their cyclotron frequency ω c = ( q m )B in the trapping field B is measured. Ratios of these frequencies lead to the determination of the atomic mass of these isotopes. A resolving power of typically m Δm = 10 6 and an accuracy of δm ≈10 keV is obtained. The mass of 78 Sr is measured for the first time and, in most cases, the mass values of the other isotopes are significantly improved. The experimental masses are compared with theoretical predictions.

PhysicsNuclear and High Energy Physics010308 nuclear & particles physics[PHYS.NEXP] Physics [physics]/Nuclear Experiment [nucl-ex]Isotopes of chlorine[PHYS.NEXP]Physics [physics]/Nuclear Experiment [nucl-ex]Penning trapMass spectrometry7. Clean energy01 natural sciencesISOLTRAPIsotopes of oxygenAtomic massNuclear physicsMass0103 physical sciencesNuclear Physics - ExperimentAtomic physics010306 general physicsQuadrupole mass analyzer
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High-precision masses of neutron-deficient rubidium isotopes using a Penning trap mass spectrometer

2007

The atomic masses of the neutron-deficient radioactive rubidium isotopes $^{74-77,79,80,83}$Rb have been measured with the Penning trap mass spectrometer ISOLTRAP. Using the time-of-flight cyclotron resonance technique, relative mass uncertainties ranging from $1.6 \times 10^{-8}$ to $5.6 \times 10^{-8}$ were achieved. In all cases, the mass precision was significantly improved as compared with the prior Atomic-Mass Evaluation; no significant deviations from the literature values were observed. The exotic nuclide $^{74}$Rb with a half-life of only 65 ms, is the shortest-lived nuclide on which a high-precision mass measurement in a Penning trap has been carried out. The significance of these…

PhysicsNuclear and High Energy Physics21.10.Dr 07.75.+h 27.50.+e 32.10.Bi010308 nuclear & particles physics[PHYS.NEXP]Physics [physics]/Nuclear Experiment [nucl-ex]Penning trapMass spectrometry01 natural sciencesISOLTRAPIsotopes of rubidiumAtomic massNuclear physics0103 physical sciencesMass spectrumNuclear Physics - ExperimentNeutronNuclide010306 general physics
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Accurate masses of neutron-deficient nuclides close to

2001

Abstract Mass measurements with the Penning-trap mass spectrometer ISOLTRAP at ISOLDE/CERN are extended to nonsurface ionizable species using newly developed ion-beam bunching devices. Masses of 179–197Hg, 196,198Pb, 197Bi, 198Po and 203At were determined with an accuracy of 1×10 −7 corresponding to δm≈20  keV. Applying a resolving power of up to 3.7×10 6 ground and isomeric states of 185,187,191,193,197Hg were separated. First experimental values for the isomeric excitation energy of 187,191Hg are obtained. A least-squares adjustment has been performed and theoretical approaches are discussed to model the observed fine structure in the binding energy.

PhysicsNuclear and High Energy PhysicsBinding energyNeutronNuclideAtomic physicsMass spectrometryPenning trapISOLTRAPAtomic massExcitationNuclear Physics A
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Direct mass measurements of cadmium and palladium isotopes and their double-βtransitionQvalues

2012

The Q-value of the double-electron capture in Cd-108 has been determined to be (272.04 +/- 0.55) keV in a direct measurement with the double-Penning trap mass spectrometer TRIGA-TRAP. Based on this result a resonant enhancement of the decay rate of Cd-108 is excluded. We have confirmed the double-beta transition Q-values of Cd-106 and Pd-110 recently measured with the Penning-trap mass spectrometers SHIPTRAP and ISOLTRAP, respectively. Furthermore, the atomic masses of the involved nuclides Cd-106, Cd-108, Cd-110, Pd-106, Pd-108 and Pd-110 have been directly linked to the atomic mass standard.

PhysicsNuclear and High Energy PhysicsCadmiumchemistryIsotopes of palladiumDouble beta decaychemistry.chemical_elementNuclideAtomic physicsMass spectrometryISOLTRAPBeta decayAtomic massPhysical Review C
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Production and trapping of carbon clusters for absolute mass measurements at ISOLTRAP

2001

Singly-charged carbon clusters C/sub n//sup +/ (n >or= 1) have been produced by laser-induced desorption and fragmentation of C/sub 60/ fullerenes and have been injected into and stored in the Penning trap system of the ISOLTRAP mass spectrometer at ISOLDE/CERN. The present study is the first step to extend the until now direct mass measurements at ISOLTRAP to absolute mass measurements by using clusters of /sup 12/C. (10 refs).

PhysicsNuclear and High Energy PhysicsFullereneTrappingPenning trapMass spectrometryISOLTRAPMassFragmentation (mass spectrometry)DesorptionPhysics::Atomic and Molecular ClustersNuclear Physics - ExperimentAtomic physicsNuclear Experiment
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A linear radiofrequency quadrupole ion trap for the cooling and bunching of radioactive ion beams

2000

A linear radiofrequency quadrupole ion guide and beam buncher has been installed at the ISOLTRAP mass spectrometry experiment at the ISOLDE facility at CERN. The apparatus is being used as a beam cooling, accumulation, and bunching system. It operates with a buffer gas that cools the injected ions and converts the quasicontinuous 60- keV beam from the ISOLDE facility to 2.5-keV beam pulses with improved normalized transverse emittance. Recent measurements suggest a capture efficiency of the ion guide of up to 40% and a cooling and bunching efficiency of at least 12% which is expected to still be increased. The improved ISOLTRAP setup has so far been used very successfully in three on-line e…

PhysicsNuclear and High Energy PhysicsIon beam010308 nuclear & particles physics[PHYS.NEXP]Physics [physics]/Nuclear Experiment [nucl-ex]Ion gunAccelerators and Storage Rings01 natural sciences7. Clean energyISOLTRAPNuclear physicsIon beam deposition0103 physical sciencesPhysics::Accelerator PhysicsIon trapAtomic physicsQuadrupole ion trapBeam emittanceNuclear Experiment010306 general physicsBeam (structure)Nuclear Physics A
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Direct mass measurements of unstable rare earth isotopes with the ISOLTRAP mass spectrometer

1996

Abstract Direct mass measurements of neutron deficient rare earth isotopes in the vicinity of 146 Gd were performed for the first time with the Penning trap mass spectrometer ISOLTRAP at ISOLDE/CERN. Since ISOL-facilities deliver these isotopes with a large amount of isobaric contamination, these measurements became possible only after the installation of a new cooler trap which acts as an isobar separator. To date more than 40 isotopes of the elements Pr, Nd, Pm, Sm, Eu, Dy, and Ho have been measured with a typical accuracy of δm ≈ 14 keV. Some of these isotopes provide an important anchor for many other isotopes linked by known Q-values.

PhysicsNuclear and High Energy PhysicsIsotope010308 nuclear & particles physicsIsotopes of argon[PHYS.NEXP]Physics [physics]/Nuclear Experiment [nucl-ex]Mass spectrometryPenning trap01 natural sciences7. Clean energyISOLTRAPIsotopes of oxygenIsotopes of nitrogenNuclear physics13. Climate action0103 physical sciencesNeutronAtomic physics010306 general physicsNuclear Physics A
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Accurate mass measurements on neutron-deficient krypton isotopes

2006

soumis à Nuclear Physics A; The masses of $^{72-78,80,82,86}$Kr were measured directly with the ISOLTRAP Penning trap mass spectrometer at ISOLDE/CERN. For all these nuclides, the measurements yielded mass uncertainties below 10 keV. The ISOLTRAP mass values for $^{72-75}$Kr outweighed previous results obtained by means of other techniques, and thus completely determine the new values in the Atomic-Mass Evaluation. Besides the interest of these masses for nuclear astrophysics, nuclear structure studies, and Standard Model tests, these results constitute a valuable and accurate input to improve mass models. In this paper, we present the mass measurements and discuss the mass evaluation for t…

PhysicsNuclear and High Energy PhysicsIsotope010308 nuclear & particles physicsIsotopes of krypton[PHYS.NEXP]Physics [physics]/Nuclear Experiment [nucl-ex]Penning trapMass spectrometry01 natural sciences7. Clean energyISOLTRAPNuclear physics07.75.+h 21.10.Dr 27.30.+t 32.10.Bi0103 physical sciencesNuclear astrophysicsNeutronNuclide010306 general physicsNuclear Experiment
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High-accuracy mass determination of neutron-rich rubidium and strontiumiIsotopes

2002

The penning-trap mass spectrometer ISOLTRAP, installed at the on-line isotope separator ISOLDE at CERN, has been used to measure atomic masses of $^{88,89,90m,91,92,93,94}$Rb and $^{91- 95}$Sr. Using a resolving power of R $\!\scriptstyle\approx$1 million a mass accuracy of typically 10 keV was achieved for all nuclides. Discrepancies with older data are analyzed and discussed, leading to corrections to those data. Together with the present ISOLTRAP data these corrected data have been used in the general mass adjustment.

PhysicsNuclear and High Energy PhysicsIsotope010308 nuclear & particles physics[PHYS.NEXP]Physics [physics]/Nuclear Experiment [nucl-ex]Mass spectrometryPenning trap01 natural sciencesISOLTRAPAtomic massNuclear physics0103 physical sciencesMass spectrumNeutronNuclear Physics - ExperimentNuclideAtomic physics010306 general physics
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High-accuracy mass measurements of neutron-rich Kr isotopes

2006

The atomic masses of the neutron-rich krypton isotopes {sup 84,86-95}Kr have been determined with the tandem Penning trap mass spectrometer ISOLTRAP with uncertainties ranging from 20 to 220 ppb. The masses of the short-lived isotopes {sup 94}Kr and {sup 95}Kr were measured for the first time. The masses of the radioactive nuclides {sup 89}Kr and {sup 91}Kr disagree by 4 and 6 standard deviations, respectively, from the present Atomic-Mass Evaluation database. The resulting modification of the mass surface with respect to the two-neutron separation energies as well as implications for mass models and stellar nucleosynthesis are discussed.

PhysicsNuclear and High Energy PhysicsIsotopeIsotopes of kryptonMass spectrometryISOLTRAPAtomic massNuclear physicsNucleosynthesisNeutronPhysics::Atomic PhysicsNuclideAtomic physicsNuclear ExperimentParticle Physics - ExperimentPhysical Review C
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