Search results for "Penn"

showing 10 items of 568 documents

ISOLTRAP mass measurements of exotic nuclides at

2005

The ISOLTRAP experiment at the ISOLDE facility at CERN is a Penning trap mass spectrometer for on-line mass measurements on short-lived radionuclides. It allows the determination of atomic masses of exotic nuclides with a relative uncertainty of only 10−8. The results provide important information for, e.g., weak interaction studies and nuclear models. Recent ISOLTRAP investigations and applications of high-precision mass measurements are discussed.

PhysicsNuclear and High Energy PhysicsRadionuclideLarge Hadron Collider010308 nuclear & particles physicsWeak interactionPenning trapMass spectrometry01 natural sciencesISOLTRAPAtomic massNuclear physics0103 physical sciencesNuclideNuclear Experiment010306 general physicsNuclear Physics A
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Trap-assisted decay spectroscopy with ISOLTRAP

2012

Penning traps are excellent high-precision mass spectrometers for radionuclides. The high-resolving power used for cleaning isobaric and even isomeric contaminants can be exploited to improve decay-spectroscopy studies by delivering purified samples. An apparatus allowing trap-assisted decay spectroscopy has been coupled to the ISOLTRAP mass spectrometer at ISOLDE/CERN. The results from studies with stable and radioactive ions show that the setup can be used to perform decay studies on purified short-lived nuclides and to assist mass measurements. (C) 2012 Elsevier B.V. All rights reserved.

PhysicsNuclear and High Energy PhysicsRadionuclideStudies at ISOL-type facilitiesPenning trap mass spectrometers010308 nuclear & particles physics[PHYS.NEXP]Physics [physics]/Nuclear Experiment [nucl-ex]Trap (plumbing)Mass spectrometry01 natural sciencesISOLTRAPIonNuclear physicsTrap-assisted decay spectroscopy0103 physical sciencesIsobaric processNuclideNuclear Experiment010306 general physicsSpectroscopyInstrumentation
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Bunching and cooling of radioactive ions with REXTRAP

2002

The properties of radioactive ion beams produced by the present on-line target ion source technology are often not suitable for direct post acceleration. For that purpose pulsed and cooled beams of higher charged ions are required. In the case of REX-ISOLDE, the post accelerator at the CERN-ISOLDE radioactive beam facility, a unique system for beam preparation is used. It consists of a gas-filled cylindrical Penning trap (REXTRAP) for bunching and cooling followed by an electron beam ion source for charge state breeding. The Penning trap has been successfully operated with an efficiency of up to 40% and a total number of up to 107 ions stored. Buffer-gas sideband cooling at the ions’ cyclot…

PhysicsNuclear and High Energy PhysicsRange (particle radiation)Large Hadron ColliderIon beamChemistryParticle acceleratorIon gunPenning trapAccelerators and Storage RingsLinear particle acceleratorIon sourcePulse (physics)law.inventionIonNuclear physicsIon beam depositionPhysics::Plasma PhysicslawPhysics::Accelerator PhysicsPhysics::Atomic PhysicsIon trapAtomic physicsNuclear ExperimentBeam (structure)
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Cooling of radioactive ions with the Penning trap REXTRAP

2005

Abstract Cooling of radioactive ion beams in a Penning trap is an essential component of the post-accelerator REX-ISOLDE at CERN. Prior to their charge-breeding and acceleration, ions from the on-line mass separator ISOLDE are accumulated, cooled and bunched with REXTRAP. This beam preparation provides short ion pulses with low emittance, key ingredient for a high efficiency of REX-ISOLDE. Two different cooling techniques have been investigated with REXTRAP. Both rely on the use of a buffer gas as the coolant but differ in the way the transversal compression of the stored ion cloud is achieved. Sideband cooling with a light buffer gas as coolant is the standard technique used at REXTRAP so …

PhysicsNuclear and High Energy PhysicsSidebandQuadrupoleBuffer gasPhysics::Accelerator PhysicsThermal emittanceIon trapAtomic physicsPenning trapInstrumentationIonCoolantNuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment
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Extension of Penning-trap mass measurements to very short-lived nuclides

2000

Abstract Mass measurements on 33,34,42,43 Ar have been performed at the ISOLTRAP spectrometer. An accuracy of δm ≈4 keV has been achieved for all measured isotopes. With 33 Ar it is the first time that a nuclide with a half-life shorter than one second has been investigated using a Penning trap. This became possible due to the recently installed linear radio-frequency ion-trap system and an improved, faster measurement cycle.

PhysicsNuclear and High Energy PhysicsSpectrometerIsotope010308 nuclear & particles physics[PHYS.NEXP]Physics [physics]/Nuclear Experiment [nucl-ex]Penning trap7. Clean energy01 natural sciencesISOLTRAPAtomic massNuclear physics13. Climate action0103 physical sciencesNuclear Physics - ExperimentIon trapNuclideAtomic physics010306 general physicsHybrid mass spectrometerNuclear Physics A
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Towards a magnetic field stabilization at ISOLTRAP for high-accuracy mass measurements on exotic nuclides

2008

Abstract The field stability of a mass spectrometer plays a crucial role in the accuracy of mass measurements. In the case of mass determination of short-lived nuclides with a Penning trap, major causes of fluctuations are temperature variations in the vicinity of the trap and pressure changes in the liquid helium cryostat of the superconducting magnet. Thus systems for the temperature and pressure stabilization of the Penning trap mass spectrometer ISOLTRAP at the ISOLDE facility at CERN have been installed. A reduction of the temperature and pressure fluctuations by at least an order of magnitude down to Δ T ≈ ± 5 mK and Δ p ≈ ± 5 Pa has been achieved, which corresponds to a relative magn…

PhysicsNuclear and High Energy PhysicsSpectrometerLiquid heliumSuperconducting magnetMass spectrometryPenning trapISOLTRAPlaw.inventionNuclear physicslawIon trapNuclear ExperimentInstrumentationHybrid mass spectrometer
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PIPERADE: A double Penning trap for mass separation and mass spectrometry at DESIR/SPIRAL2

2021

International audience; A double Penning trap is being commissioned at CENBG Bordeaux for the future DESIR/SPIRAL2 facility of GANIL. The setup is designed to perform both high-resolution mass separation of the ion beam for trap-assisted spectroscopy, and high-accuracy mass spectrometry of short-lived nuclides. In this paper, the technical details of the new device are described. First offline tests with the purification trap are also presented, showing a mass resolving power of about 105.

PhysicsNuclear and High Energy PhysicsSpeichertechnik - Abteilung BlaumMass spectrometryIon beamPenning trap010401 analytical chemistryMass spectrometryPenning trap01 natural sciencesMass separation0104 chemical sciencesNuclear physicsTrap (computing)0103 physical sciencesBeam purificationNew device[PHYS.PHYS.PHYS-INS-DET]Physics [physics]/Physics [physics]/Instrumentation and Detectors [physics.ins-det]Nuclide010306 general physicsSpectroscopyInstrumentationDESIR/SPIRAL2
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Continuous Stern–Gerlach effect and the magnetic moment of the antiproton

2004

Abstract The measurement of the magnetic moment (or g-factor ) of the antiproton and of the proton is a sensitive test of CPT invariance. We discuss the possibility of applying the continuous Stern–Gerlach effect to detect quantum jumps between the two spin states (spin up and spin down) of the antiproton. The measurement will be performed on a single antiproton stored in a Penning trap. The g -factor of the antiproton is determined by measuring its cyclotron frequency and its spin precession frequency in the magnetic field of the trap. With the double Penning trap method the g -factor of the antiproton can be determined with an accuracy of 1 ppb.

PhysicsNuclear and High Energy PhysicsStern–Gerlach experimentSpin polarizationProton magnetic momentPenning trapElectron magnetic dipole momentSpin magnetic momentNuclear physicsAntiprotonNuclear magnetic momentPhysics::Accelerator PhysicsHigh Energy Physics::ExperimentPhysics::Atomic PhysicsNuclear ExperimentInstrumentationNuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms
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JYFLTRAP: a cylindrical Penning trap for isobaric beam purification at IGISOL

2004

Abstract A Penning trap has been installed for isobaric beam purification at the IGISOL-facility at the University of Jyvaskyla. In this paper, the technical details of this new device together with results of the first tests are presented. The mass resolving power, depending on the excitation parameters and the ion species, can be as high as 145 000 and the total transmission has been determined to be 17%. In addition, it is shown that with this experimental setup it is possible to measure atomic masses up to A=120 with accuracies of approximately 50 keV .

PhysicsNuclear and High Energy PhysicsTotal transmissionIsobaric processNew deviceAtomic physicsNuclear ExperimentPenning trapInstrumentationExcitationBeam (structure)Atomic massIonNuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment
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Mass spectrometry and decay spectroscopy of isomers across the Z=82 shell closure

2013

Recent results from a measurement campaign studying the isomerism in neutron-deficient Tl isotopes are presented. The measurements make use of a nuclear spectroscopy setup coupled to the high-resolution Penning-trap mass spectrometer ISOLTRAP at CERN's radioactive ion-beam facility ISOLDE. The mass values of 190,194Tl are improved and a mass-spin-state assignment is carried out. An additional mass measurement of the grandparent nuclide 198At allows the deduction of the spin-state ordering in 190Tl. As a result, the excitation energies of the isomers in both Tl isotopes are determined for the first time to Eex(194Tl)=260(15) keV and E ex(190Tl)=89(12) keV. Furthermore, this allows anchoring …

PhysicsNuclear and High Energy Physics[PHYS.NUCL]Physics [physics]/Nuclear Theory [nucl-th]010308 nuclear & particles physicsClosure (topology)Shell (structure)ISOLTRAPMass spectrometry01 natural sciencesIon trappingISOLTRAPPenning ion trapTheoryofComputation_ANALYSISOFALGORITHMSANDPROBLEMCOMPLEXITY0103 physical sciencesisomersddc:530Atomic physicsNuclear Experiment010306 general physicsSpectroscopyZ=82mass spectrometry
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