Search results for "Penn"

showing 10 items of 568 documents

Ramsey technique applied in a Penning trap mass spectrometer

1991

Abstract The Ramsey method has been applied in an experiment aiming for accurate mass determination of unstable isotopes. The ion motion in a Penning trap has been excited with time-separated oscillatory fields and Ramsey fringes were observed in the case of dipole and quadrupole excitation. The experimental resonances are in good agreement with theory. Further applications of the technique are discussed.

Nuclear and High Energy PhysicsChemistryMass spectrometryPenning trapDipoleQuadrupolePhysics::Atomic PhysicsIon trapDetectors and Experimental TechniquesAtomic physicsQuadrupole ion trapInstrumentationQuadrupole mass analyzerHybrid mass spectrometerNuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms
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Production and investigation of multiply charged metal clusters in a Penning trap

1996

Singly charged gold cluster ions from a laser-vaporization source are transferred into a Penning trap and subjected to electron bombardment. The charged reaction products are analyzed by time-of-flight mass spectrometry after axial ejection from the trap. They include singly charged cluster fragments, multiply charged clusters of the initial size and multiply charged cluster fragments. The multiply charged clusters are selected and further investigated by collision induced dissociation. Two types of reactions can be distinguished: Dissociation into several charged fragments and evaporation of neutrals. Several features of multiply charged clusters relevant for future investigations are revi…

Nuclear and High Energy PhysicsGold clusterCollision-induced dissociationChemistryCondensed Matter PhysicsMass spectrometryPenning trapAtomic and Molecular Physics and OpticsDissociation (chemistry)IonCluster (physics)Physical and Theoretical ChemistryAtomic physicsNuclear ExperimentMetal clustersHyperfine Interactions
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The SMILETRAP (Stockholm-Mainz-Ion-LEvitation-TRAP) facility

1996

Described in this paper is an experimental facility which measures atomic masses by using multiply charged ions from an electron beam ion source. The ions are injected into a Penning trap and the cyclotron frequencies measured. A precision of 2×10−9 has been reached using highly charged carbon, nitrogen, oxygen and neon.

Nuclear and High Energy PhysicsIon beamChemistryCyclotronchemistry.chemical_elementCondensed Matter PhysicsPenning trapAtomic and Molecular Physics and OpticsIon sourcelaw.inventionIonNeonPhysics::Plasma PhysicslawPhysics::Atomic and Molecular ClustersLevitationPhysics::Atomic PhysicsIon trapPhysical and Theoretical ChemistryAtomic physicsHyperfine Interactions
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A cylindrical Penning trap for capture, mass selective cooling, and bunching of radioactive ion beams

1997

Abstract A Penning trap ion accumulator, cooler, and buncher for low-energy ion beams has been developed for the ISOLTRAP mass spectrometer at ISOLDE/CERN. A cylindrical electrode configuration is used for the creation of a nested trapping potential. This is required for efficient accumulation of externally produced ions and for high-mass selectivity by buffer gas cooling. The design goal of a mass resolving power of about 1 × 10 5 has been achieved. Isobar separation has been demonstrated for radioactive rare-earth ion beams delivered by the ISOLDE on-line mass separator.

Nuclear and High Energy PhysicsIon beamChemistryMass spectrometryPenning trapIon gunISOLTRAPIon sourceNuclear physicsSecondary ion mass spectrometryPhysics::Accelerator PhysicsIon trapDetectors and Experimental TechniquesAtomic physicsNuclear ExperimentInstrumentationNuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms
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Ion traps — recent applications and developments

1991

Abstract Paul and Penning traps are now widely applied in chemistry and physics laboratories. They are used as storage devices, as tools for precision spectroscopy and metrology, and as mass spectrometers. Direct mass measurements of short-lived Rb, Sr, Cs, Ba, Fr and Ra isotopes were performed at the on-line mass separator ISOLDE at CERN, Geneva, by means of a tandem Penning trap system. The ions from ISOLDE are captured and cooled in a first trap and trasnferred to a second trap. Here the mass of the trapped ions is determined by measuring their cyclotron frequency. Resolving powers exceeding m/Δm (FWHM) = 106 could be achieved. Mass values of about 60 isotopes have been determined with a…

Nuclear and High Energy PhysicsIsotopeChemistryCyclotronPenning trapMass spectrometrylaw.inventionIonlawSelected ion monitoringIon trapDetectors and Experimental TechniquesAtomic physicsInstrumentationHybrid mass spectrometerNuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms
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The REX-ISOLDE project

1998

Abstract REX-ISOLDE [1] is an experiment at ISOLDE/CERN with a twofold aim: (i) to demonstrate a novel efficient scheme for the acceleration of radioactive ions from the online mass separator ISOLDE to energies around the Coulomb barrier. (ii) to perform first nuclear physics experiments by studying the structure of the neutron-rich (N = 20, N = 28) nuclei by Coulomb excitation and neutron transfer reactions. An overview on the different components of the radioactive beam accelerator is given with special emphasis on the separation possibilities and ion number capabilities of the system.

Nuclear and High Energy PhysicsLarge Hadron ColliderChemistryCoulomb barrierCoulomb excitationPenning trapLinear particle acceleratorIsotope separationlaw.inventionIonNuclear physicslawPhysics::Accelerator PhysicsNeutronNuclear ExperimentInstrumentationNuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms
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Towards higher accuracy with the ISOLTRAP mass spectrometer

1996

To now the masses of more than hundred unstable isotopes have been determined with the ISOLTRAP mass spectrometer installed at ISOLDE/CERN. Typically a resolving power of mΔm ≈ 1 × 106 was used and the mass determinations were assigned an accuracy of δmm ≈ 1 × 10−7. We show that with improvements to ISOLTRAP and refinements of the experimental technique an accuracy of δmm ≈ 3 × 10−8 can be obtained.

Nuclear and High Energy PhysicsLarge Hadron ColliderIsotope010308 nuclear & particles physicsChemistry[PHYS.NEXP] Physics [physics]/Nuclear Experiment [nucl-ex][PHYS.NEXP]Physics [physics]/Nuclear Experiment [nucl-ex]Penning trapMass spectrometry01 natural sciencesISOLTRAPAtomic massNuclear physics0103 physical sciencesAtomic physics010306 general physicsInstrumentation
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Nuclear physics with ion traps at ISOLDE: present and future

1993

Nuclear physics experiments with ion traps started at the on-line separator ISOLDE/CERN, Geneva, with the installation of the tandem Penning trap mass spectrometer ISOLTRAP. With this device the massM of a stored ion is determined by measuring its cyclotron frequency θc=(q/M)B in a magnetic fieldB. Mass measurements with a resolving powerR=θc/Δθc(FWHM)≈1×106 and accuracies of δM/M≈10−7 were performed on more than sixty unstable isotopes of the elements Rb, Sr, Cs, Ba, Fr, and Ra.

Nuclear and High Energy PhysicsLarge Hadron ColliderIsotopeChemistryCyclotronCondensed Matter PhysicsPenning trapMass spectrometryISOLTRAPAtomic and Molecular Physics and Opticslaw.inventionIonNuclear physicsFull width at half maximumlawPhysical and Theoretical ChemistryAtomic physicsHyperfine Interactions
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First absolute mass measurements of short-lived isotopes

1987

Absolute mass measurements of short-lived isotopes have been performed at the on-line mass separator ISOLDE at CERN by determining the cyclotron frequencies of ions confined in a Penning trap. The cyclotron frequencies for77,78,85,86,88Rb and88Sr ions could be determined with a resolving power of 3×105 and an accuracy of better than 10−6, which corresponds to 100 keV for massA=100. The shortest-lived isotope under investigation was77Rb with a half-life of 3.7 min. The resonances obtained for the isobars88Rb and88Sr were clearly resolved.

Nuclear and High Energy PhysicsLarge Hadron ColliderIsotopeChemistryShort lived isotopesCyclotronCondensed Matter PhysicsPenning trapAtomic and Molecular Physics and OpticsFourier transform ion cyclotron resonanceIonlaw.inventionlawNuclear Physics - ExperimentPhysical and Theoretical ChemistryAtomic physicsIon cyclotron resonanceHyperfine Interactions
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Development of a carbon-cluster ion source for JYFLTRAP

2008

Abstract A carbon-cluster ion source based on laser ablation and ionization of a carbon sample has been built and tested for the JYFLTRAP setup. In the present configuration the ion source is situated in the electrostatic switchyard in front of the radiofrequency (RFQ) cooler and buncher. In this position the beam quality of the carbon clusters injected into the Penning trap system is considerably improved by the RFQ. Moreover, the mass-dependence of the RFQ’s transmission can be used to some extent to suppress unwanted cluster sizes.

Nuclear and High Energy PhysicsLaser ablationchemistryIonizationCluster (physics)chemistry.chemical_elementLaser beam qualityAtomic physicsMass spectrometryPenning trapInstrumentationCarbonIon sourceNuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms
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