Search results for "Ion beam"

showing 10 items of 297 documents

Transverse laser cooling of a radio-frequency bunched ion beam in the storage ring TSR

1996

Abstract We report on the observation of the indirect transverse laser cooling effect in a radio-frequency bunched beam of 7.3 MeV 9 Be + ions, stored in the Heidelberg Test Storage Ring and subject to direct longitudinal laser cooling. This bunched scheme offers particular advantages for producing ultracold beams with unprecedented phase-space densities.

PhysicsNuclear and High Energy PhysicsResolved sideband coolingIon beamIonTransverse planeLaser coolingPhysics::Accelerator PhysicsPhysics::Atomic PhysicsRadio frequencyAtomic physicsNuclear ExperimentInstrumentationBeam (structure)Storage ring
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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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Wien filter for cooled low-energy radioactive ion beams

2002

A Wien filter for cooled radioactive ion beams has been designed at Ion Guide Isotope Separator On Line technique (IGISOL). The purpose of such device is to eliminate doubly charged ions from the mass separated singly charged ions, based on q=+2→q=+1 charge exchange process in an ion cooler. The performance of the Wien filter has been tested off-line with a discharge ion source as well as on-line with a radioactive beam. The electron capture process of cooled q=+2 ions has been investigated in a radiofrequency quadrupole ion cooler with varying partial pressures of nitrogen. Also, the superasymmetric fission production yields of 68<A<78 nuclei have been deduced.

PhysicsNuclear and High Energy PhysicsWien filterIsotopeFissionElectron captureIon sourceIonIon beam depositionPhysics::Plasma PhysicsQuadrupoleAtomic physicsNuclear ExperimentInstrumentationNuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment
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Collinear laser spectroscopy of radioisotopes of zirconium

2003

Isotope shifts and hyperfine structures have been measured for radioisotopes of ionic zirconium using on-line laser spectroscopy at the IGISOL facility in Jyvaskyla, where the installation of an ion beam cooler/buncher has significantly improved the experimental sensitivity. Measurements have been made on all the neutron-deficient isotopes from 87Zr to 90Zr, including the isomers 87m,89mZr, and the neutron-rich isotopes from 96Zr to 102Zr. The change in mean square charge radii between the isotopes and the nuclear moments of the odd isotopes have been extracted. The data show a sudden increase in the mean square charge radius at mass A = 100, consistent with an onset of nuclear deformation …

PhysicsNuclear and High Energy PhysicsZirconiumIon beamIsotopeIonic bondingchemistry.chemical_elementNuclear magnetic resonancechemistryCharge radiusGamma spectroscopyPhysics::Atomic PhysicsAtomic physicsNuclear ExperimentSpectroscopyHyperfine structureJournal of Physics G: Nuclear and Particle Physics
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Studying exotic nuclides close to the N = Z line at the HIGISOL facility

2003

The ion guide [1, 2] for heavy-ion fusion-evaporation reactions (HIGISOL) which was developed by Beraud et al. [3] has been implemented at the IGISOL facility in Jyvaskyla [4]. This system was modified over the past 5 years. Figure 1 shows the present set-up. The HIGISOL takes advantage of the different angular distributions of primary beam and reaction products: the primary beam is stopped in front of the stopping chamber and the reaction products enter the stopping chamber through a thin foil passing the beam stop. This so called “shadow” method removes the plasma effect since the primary beam is not ionising the stopping gas. In order to improve ion optical properties, mainly to reduce t…

PhysicsNuclear physicsDc voltageIon beamPlasma effectSkimmer (machine)NuclideBeam (structure)Line (formation)Ion
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Results of the commissioning of the Pion Beam Factory at SIS/GSI

1999

We describe briefly the Pion Beam Factory recently installed at SIS/GSI and present the main results of the commissioning performed during September 1998.

PhysicsNuclear reactionParticle physicsPhysics::Instrumentation and DetectorsNuclear TheoryParticle acceleratorBeam opticslaw.inventionNuclear physicsPion beamlawPhysics::Accelerator PhysicsFactory (object-oriented programming)High Energy Physics::ExperimentNuclear ExperimentAIP Conference Proceedings
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Detection system for forward emitted photons at the Experimental Storage Ring at GSI

2013

A single photon counting system has been developed for efficient detection of forward emitted fluorescence photons at the Experimental Storage Ring (ESR) at GSI. The system employs a movable parabolic mirror with a central slit that can be positioned around the ion beam and a selected low noise photomultiplier for detection of the collected photons. Compared to the previously used system of mirror segments installed inside the ESR the collection efficiency for forward-emitted photons is improved by more than a factor of 5. No adverse effects on the stored ion beam have been observed during operation besides a small drop in the ion current of about 5% during movement of the mirror into the b…

PhysicsPhotomultiplierPhysics - Instrumentation and DetectorsPhotonIon beamAtomic Physics (physics.atom-ph)business.industryParabolic reflectorFOS: Physical sciencesIon currentInstrumentation and Detectors (physics.ins-det)Photon countingPhysics - Atomic PhysicsOpticsbusinessInstrumentationMathematical PhysicsBeam (structure)Storage ringJournal of Instrumentation
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A new measurement of the neutron detection efficiency for the NaI Crystal Ball detector

2015

We report on a measurement of the neutron detection efficiency in NaI crystals in the Crystal Ball detector obtained from a study of single π0 photoproduction on deuterium using the tagged photon beam at the Mainz Microtron. The results were obtained up to a neutron energy of 400 MeV . They are compared to previous measurements made more than 15 years ago at the pion beam at the BNL AGS.

PhysicsPhysics - Instrumentation and DetectorsPhysics::Instrumentation and DetectorsDetectorNuclear TheoryFOS: Physical sciencesInstrumentation and Detectors (physics.ins-det)Neutron temperatureHigh Energy Physics - ExperimentNuclear physicsHigh Energy Physics - Experiment (hep-ex)Pion beamDeuteriumNeutron detectionPhysics::Accelerator PhysicsHigh Energy Physics::ExperimentPhoton beamNuclear Experiment (nucl-ex)Nuclear ExperimentInstrumentationMicrotronNuclear ExperimentMathematical PhysicsCrystal Ball
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Stern-Gerlach splitting of low-energy ion beams

2019

We present a feasibility study with several magnetic field configurations for creating spin-dependent forces that can split a low-energy ion beam by the Stern-Gerlach effect. To the best of our knowledge, coherent spin-splittings of charged particles have yet to be realised. Our proposal is based on ion source parameters taken from a recent experiment that demonstrated single-ion implantation from a high-brightness ion source combined with a radio-frequency Paul trap. The inhomogeneous magnetic fields can be created by permanently magnetised microstructures or from current-carrying wires with sizes in the micron range, such as those recently used in a successful implementation of the Stern-…

PhysicsQuantum PhysicsStern–Gerlach experimentIon beamAtomic Physics (physics.atom-ph)Institut für Physik und AstronomieGeneral Physics and AstronomyFOS: Physical sciences01 natural sciencesIon sourceCharged particlePhysics - Atomic Physics010305 fluids & plasmasMagnetic fieldIonsymbols.namesake0103 physical sciencessymbolsddc:530Ion trapAtomic physics010306 general physicsQuantum Physics (quant-ph)Lorentz force
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2021

Several techniques are under development for image-guidance in particle therapy. Positron (β+) emission tomography (PET) is in use since many years, because accelerated ions generate positron-emitting isotopes by nuclear fragmentation in the human body. In heavy ion therapy, a major part of the PET signals is produced by β+-emitters generated via projectile fragmentation. A much higher intensity for the PET signal can be obtained using β+-radioactive beams directly for treatment. This idea has always been hampered by the low intensity of the secondary beams, produced by fragmentation of the primary, stable beams. With the intensity upgrade of the SIS-18 synchrotron and the isotopic separati…

PhysicsRadioactive ion beamsCancer ResearchParticle therapyProtonIsotopemedicine.medical_treatmentSynchrotron030218 nuclear medicine & medical imaginglaw.inventionIonNuclear physics03 medical and health sciences0302 clinical medicinePositronOncologyFragmentation (mass spectrometry)law030220 oncology & carcinogenesismedicineFrontiers in Oncology
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