Search results for "SEPARATOR"

showing 10 items of 128 documents

A study of a helium-jet ion guide for an on-line isotope separator

1981

Abstract A new method based on helium-jet techniques permits primary recoil ions, produced in radioactive decay or in nuclear reactions to be run directly through a mass separator. Results obtained with a 227 Ac source promise qualities complementary with those obtained with conventional ion sources and indicate an overall efficiency of the order of 10%. Preliminary results with 20 Na recoils from the 20 Ne(p,n)-reaction indicate that most of the ionic species transported out from the target chamber are negatively charged.

Nuclear reactionIsotope010308 nuclear & particles physicsChemistryRadiochemistryGeneral EngineeringAnalytical chemistrychemistry.chemical_elementIonic bondingSeparator (oil production)7. Clean energy01 natural sciencesIonRecoil0103 physical sciencesNuclear Experiment010306 general physicsHeliumRadioactive decayNuclear Instruments and Methods in Physics Research
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Helium-jet ion guide for an on-line isotope separator

1981

Abstract A new method based on helium-jet techniques permits primary recoil ions produced in radioactive decay or in nuclear reactions to be run directly through a mass separator. Test results with a 227 Ac source give promise of qualities complementary to those obtained with conventional ion sources. This, 69 ± 5 per cent of the recoil particles transported with pure, commercial helium are positive ions, and 66 ± 5 per cent of them are mass separated. Nearly equal efficiencies are expected for most chemical elements and compounds. The mass spectra are remarkably free from groups caused by impurities. The shortest achievable separation time is estimated to be of the order of one millisecond.

Nuclear reactionMaterials scienceRecoilIsotopechemistryMass spectrumAnalytical chemistrySeparator (oil production)chemistry.chemical_elementGeneral MedicineRadioactive decayHeliumIonNuclear Instruments and Methods
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Probing the limit of nuclear existence: Proton emission from 159Re

2006

WOS: 000240847400007

Nuclear reactionNuclear and High Energy PhysicsSi detectorsProtonNuclear Theory[PHYS.NEXP]Physics [physics]/Nuclear Experiment [nucl-ex]measured E (p) (t)1 / 201 natural sciences7. Clean energyNuclear physicsEp0103 physical sciencesEnriched targetsNeutronNuclideProton emissionNuclear Experiment010306 general physics106Cd at 300 MeV beam energyPhysicsIsotope010308 nuclear & particles physics21.10.Hw; 21.10.Tg; 23.50.+z; 27.70.+q58Nit1/2NUCLEAR REACTIONS Ni-58+Cd-106 at 300 MeV beam energy13. Climate actionNuclear reactionsGas-filled recoil separatorAtomic physicsNucleonMeasuredRadioactive decayPhysics Letters B
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Decay of the high-spin isomer in 160Re: Changing single-particle structure beyond the proton drip line

2011

WOS: 000286708700015

Nuclear reactionPhysicsNuclear and High Energy PhysicsProtonta114Gas-filled recoil separator Si and Ge strip detectorsNUCLEAR REACTIONS Ni-58+Cd-106 at 290300 MeV beam energy enriched targetsMeasured E gamma t1/2ParticleNeutronNuclear reactionsAtomic physicsProton emissionGround stateMeasuredLine (formation)Spin-½Physics Letters B
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Rotor—frame contact in a centrifuge installed on board a ship

2009

The criticality of rotor and stator contact in a large-size marine separator is studied by numerical modelling. Two plausible mechanisms leading to such contact, namely rolling of a ship in steady-state motion and a suddenly occurring unbalance in the rotor, are considered. It is found that contact due to sea motion may be tolerable, while sudden development of unbalance at operating speed can lead to unacceptably high contact forces. This agrees with experience of centrifugal separators operating on board of ships.

On boardCentrifugeEngineeringCriticalityStatorlawbusiness.industryMechanical EngineeringSeparator (oil production)businesslaw.inventionMarine engineeringProceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science
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Recent Exploits of the ISOLTRAP Mass Spectrometer

2013

Abstract The Penning-trap mass spectrometer ISOLTRAP, located at the isotope-separator facility ISOLDE (CERN), is presented in its current form taking into account technical developments since 2007. Three areas of developments are presented. The reference ion sources have been modified to guarantee a sufficient supply of reference ions for mass measurements and systematic studies. Different excitation schemes have been investigated for manipulation of the ion motion in the Penning trap, to enhance either the purification or measurement process. A multi-reflection time-of-flight mass separator has been implemented and can now be routinely used for purification and as a versatile tool for bea…

Penning-trap mass spectrometryNuclear and High Energy PhysicsLarge Hadron ColliderIon beam analysisChemistry010401 analytical chemistryMeasurement of pure ion ensembles[PHYS.NEXP]Physics [physics]/Nuclear Experiment [nucl-ex]Mass spectrometryPenning trap01 natural sciencesISOLTRAPMulti-reflection time-of-flight mass separator0104 chemical sciencesSecondary ion mass spectrometryNuclear physicsIon-beam analysis0103 physical sciencesBeam purificationIon trapAtomic physics010306 general physicsNuclear ExperimentInstrumentationHybrid mass spectrometer
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Experimental study of isomeric intruder 12+ states in At197,203

2017

A newly observed isomeric intruder ${\textonehalf{}}^{+}$ state $[{T}_{\textonehalf{}}=3.5(6)\phantom{\rule{0.16em}{0ex}}\mathrm{ms}]$ is identified in $^{203}\mathrm{At}$ using a gas-filled recoil separator and fusion-evaporation reactions. The isomer is depopulated through a cascade of $E3$ and mixed $M1/E2$ transitions to the ${9/2}^{\ensuremath{-}}$ ground state, and it is suggested to originate from the $\ensuremath{\pi}{({s}_{\textonehalf{}})}^{\ensuremath{-}1}$ configuration. In addition, the structures above the ${\textonehalf{}}^{+}$ state in $^{203}\mathrm{At}$ and $^{197}\mathrm{At}$ are studied using in-beam $\ensuremath{\gamma}$-ray spectroscopy, recoil-decay tagging, and recoi…

Physics010308 nuclear & particles physics0103 physical sciencesState (functional analysis)Atomic physics010306 general physicsSpectroscopyGround state01 natural sciencesRecoil separatorPhysical Review C
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Direct observation of theBa114→Xe110→Te106→Sn102tripleα-decay chain using position and time correlations

2016

The triple $\ensuremath{\alpha}$-decay chain $^{114}\mathrm{Ba}\ensuremath{\rightarrow}^{110}\mathrm{Xe}\ensuremath{\rightarrow}^{106}\mathrm{Te}\ensuremath{\rightarrow}^{102}\mathrm{Sn}$ has been directly observed for the first time, following the $^{58}\mathrm{Ni}(^{58}\mathrm{Ni},2n)$ reaction. Implantation of $^{114}\mathrm{Ba}$ nuclei into a double-sided silicon-strip detector has allowed their $\ensuremath{\alpha}$ decays to be correlated in position and time with the $\ensuremath{\alpha}$ decays of the daughter $(^{110}\mathrm{Xe})$ and granddaughter $(^{106}\mathrm{Te})$ nuclei. In total, 17 events have been assigned to the $^{114}\mathrm{Ba}\ensuremath{\rightarrow}^{110}\mathrm{Xe}…

PhysicsCluster decay010308 nuclear & particles physics0103 physical sciencesDirect observationDecay chainAtomic physics010306 general physics01 natural sciencesRecoil separatorEnergy (signal processing)Physical 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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In-beam spectroscopy of $^{253,254}$No

2002

In-beam conversion electron spectroscopy experiments have been performed on the transfermium nuclei 253,254No using the conversion electron spectrometer SACRED in nearly collinear geometry in conjunction with the gas-filled separator RITU at the University of Jyvaskyla. The experimental setup is discussed and the spectra are compared to Monte Carlo simulations. The implications for the ground-state configuration of 253No are discussed.

PhysicsElectron spectrometer010308 nuclear & particles physics[PHYS.NEXP] Physics [physics]/Nuclear Experiment [nucl-ex]Monte Carlo methodSeparator (oil production)[PHYS.NEXP]Physics [physics]/Nuclear Experiment [nucl-ex]7. Clean energy01 natural sciencesElectron spectroscopySpectral line0103 physical sciencesAtomic physicsNuclear ExperimentSpectroscopy010303 astronomy & astrophysicsBeam (structure)
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