Search results for "Physics::Accelerator Physics"

showing 10 items of 1235 documents

Ultrafast Dynamics of Magnetic Domain Structures Probed by Coherent Free-Electron Laser Light

2013

Synchrotron radiation news 26(6), 27 - 32 (2013). doi:10.1080/08940886.2013.850384

Nuclear and High Energy PhysicsMagnetic domainMagnetismAstrophysics::High Energy Astrophysical Phenomena02 engineering and technology53001 natural scienceslaw.inventionOpticslaw0103 physical sciencesddc:530010306 general physicsComputingMilieux_MISCELLANEOUSPhysicsMagnetic circular dichroismbusiness.industryScatteringFree-electron laser021001 nanoscience & nanotechnologyLaserAtomic and Molecular Physics and Optics[PHYS.COND.CM-MS]Physics [physics]/Condensed Matter [cond-mat]/Materials Science [cond-mat.mtrl-sci]Physics::Accelerator PhysicsAtomic physics0210 nano-technologybusinessUltrashort pulseFermi Gamma-ray Space TelescopeSynchrotron Radiation News
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Untersuchung der Feldelektronenemission und ihrer Temperaturabh�ngigkeit bei Stromst�rken zwischen 10?14 und 10?19 A

1964

The field emission of a tungsten point cathode at very low emission currents was investigated by means of a secondary emission multiplier. The validity of the Fowler-Nordheim equation was experimentally confirmed within the range from 10−8 to 10−19 A. The dependence of the total emission current on temperature and electrical field strength was measured in the transition region between thermionic and field emission. A comparison is drawn with the theory ofMurphy andGood.

Nuclear and High Energy PhysicsMaterials scienceAstrophysics::High Energy Astrophysical Phenomenachemistry.chemical_elementThermionic emissionAstrophysics::Cosmology and Extragalactic AstrophysicsTungstenElectrical field strengthCathodelaw.inventionField electron emissionchemistrylawLow emissionSecondary emissionPhysics::Accelerator PhysicsNuclear fusionAtomic physicsAstrophysics::Galaxy AstrophysicsZeitschrift f�r Physik
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Atom beam emersion from hot cavity laser ion sources

2020

Abstract Ion sources exploiting laser resonance ionization offer efficient and element-selective radioactive ion beam production at the leading isotope separation on-line facilities worldwide. Most commonly, laser resonance ionization takes place inside a resistively heated atomizer tube directly coupled to the production target, where the element of interest is evaporated and provided as atomic vapor. While naturally the majority of atoms is ionized inside this hot cavity, a fraction of the neutrals effuses towards the high voltage beam extraction system of the subsequent mass separator. We report on several systematic investigations on this phenomenon regarding its significance and implic…

Nuclear and High Energy PhysicsMaterials scienceIon beam010308 nuclear & particles physicsSeparator (oil production)Laser01 natural scienceslaw.inventionIonIsotope separationlawIonization0103 physical sciencesAtomPhysics::Atomic and Molecular ClustersPhysics::Accelerator PhysicsPhysics::Atomic PhysicsAtomic physics010306 general physicsInstrumentationBeam (structure)Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms
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Development of economic MeV-ion microbeam technology at Chiang Mai University

2017

Abstract Developing high technologies but in economic manners is necessary and also feasible for developing countries. At Chiang Mai University, Thailand, we have developed MeV-ion microbeam technology based on a 1.7-MV Tandetron tandem accelerator with our limited resources in a cost-effective manner. Instead of using expensive and technically complex electrostatic or magnetic quadrupole focusing lens systems, we have developed cheap MeV-ion microbeams using programmed L-shaped blade aperture and capillary techniques for MeV ion beam lithography or writing and mapping. The programmed L-shaped blade micro-aperture system consists of a pair of L-shaped movable aperture pieces which are contr…

Nuclear and High Energy PhysicsMaterials scienceIon beamAperturemicrobeam02 engineering and technologyIon beam lithography01 natural scienceslaw.inventionOpticslaw0103 physical sciencesQuadrupole magnetInstrumentationLithography010302 applied physicsbusiness.industryta1182MicrobeamMeV ionL-shaped blade aperture021001 nanoscience & nanotechnologytapered glass capillaryComputer Science::OtherLens (optics)Physics::Accelerator Physicslithography0210 nano-technologybusinessBeam (structure)Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms
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Enhancing the extraction of laser-ionized beams from an arc discharge ion source volume

2018

© 2018 The Author(s) The Versatile Arc Discharge and Laser Ion Source (VADLIS) is a recently established ion source for the CERN-ISOLDE radioactive ion beam facility. It offers either electron-impact ionization (VADIS-mode) or resonance laser ionization (RILIS-mode). The choice of operating mode depends on the element of interest or the required beam purity. Particle-in-cell simulations using the VSim software show that the ion extraction efficiency of the VADLIS in RILIS-mode can be improved if it is equipped with an insulated extractor plate, to which an optimal voltage can be applied. This enables optimization of the RILIS-mode ion extraction independently of the electron density. Experi…

Nuclear and High Energy PhysicsMaterials scienceIon beamchemistry.chemical_element7. Clean energy01 natural scienceslaw.inventionIonElectric arclawIonization0103 physical sciencesGalliumDetectors and Experimental TechniquesArc discharge ionization010306 general physicsInstrumentationResonance laser ionization010308 nuclear & particles physicsbusiness.industryLaserIon sourceIon sourceParticle-in-cell simulationchemistryOptoelectronicsPhysics::Accelerator PhysicsRadioactive ion beambusinessBeam (structure)Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms
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Development of a low-energy radioactive ion beam facility for the MARA separator

2016

A low-energy radioactive ion beam facility for the production and study of nuclei produced close to the proton drip line is under development at the Accelerator Laboratory of the University of Jyv\"askyl\"a, Finland. The facility will take advantage of the mass selectivity of the recently commissioned MARA vacuum-mode mass separator. The ions selected by MARA will be stopped and thermalised in a small-volume gas cell prior to extraction and further mass separation. The gas cell design allows for resonance laser ionisation/spectroscopy both in-gas-cell and in-gas-jet. The facility will include experimental setups allowing ion counting, mass measurement and decay spectroscopy.

Nuclear and High Energy PhysicsMaterials sciencePhysics - Instrumentation and DetectorsIon beamNuclear engineeringFOS: Physical sciences01 natural sciences7. Clean energylaw.inventionIonLow energylawIonization0103 physical sciencesPhysical and Theoretical ChemistryNuclear Experiment (nucl-ex)010306 general physicsSpectroscopyNuclear ExperimentSeparator (electricity)010308 nuclear & particles physicsInstrumentation and Detectors (physics.ins-det)Condensed Matter PhysicsLaserMass measurementAtomic and Molecular Physics and OpticsPhysics::Accelerator Physics
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First demonstration of Doppler-free 2-photon in-source laser spectroscopy at the ISOLDE-RILIS

2020

Abstract Collinear Doppler-free 2-photon resonance ionization has been applied inside a hot cavity laser ion source environment at CERN-ISOLDE. An injection-seeded Ti:sapphire ring laser was used to generate light pulses with a Fourier-limited linewidth for high-resolution spectroscopy. Using a molybdenum foil as a reflective surface positioned at the end of the target transfer line, rubidium was successfully ionized inside the hot cavity. The results are presented alongside previously obtained data from measurements performed at the RISIKO mass separator at Mainz University, where collinear and perpendicular ionization geometries were tested inside an RFQ ion guide. This work is a pre-curs…

Nuclear and High Energy PhysicsMaterials sciencetutkimuslaitteetspektroskopiaPhysics::OpticsRing laser01 natural scienceslaw.invention010309 opticsLaser linewidthsymbols.namesakeOpticslawIonization0103 physical sciencesPhysics::Atomic Physics010306 general physicsSpectroscopyInstrumentationRILISbusiness.industryLaser2-photon spectroscopyIon sourceresonance laser ionizationsymbolsPhysics::Accelerator PhysicsbusinessydinfysiikkaDoppler effectDoppler broadeningNuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms
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Large-angle production of charged pions with 3-12.9 GeV/c incident protons on nuclear targets

2008

Measurements of the double-differential pi(+/-) production cross section in the momentum range 100 <= p <= 800 MeV/c and angle range 0.35 <= theta <= 2.15 rad in proton-beryllium, proton-carbon, proton-aluminium, proton-copper, proton-tin, proton-tantalum, and proton-lead collisions are presented. The data were taken with the large-acceptance HARP detector in the T9 beam line of the CERN PS. The pions were produced by proton beams in a momentum range from 3 to 12.9 GeV/c hitting a target with a thickness of 5% of a nuclear interaction length. Tracking and identification of the produced particles was performed by using a small-radius cylindrical Time Projection Chamber (TPC) placed inside a …

Nuclear and High Energy PhysicsMesonProtonPhysics::Instrumentation and DetectorsHadronNuclear TheoryFOS: Physical sciencesddc:500.27. Clean energy01 natural sciencesParticle detectorHigh Energy Physics - ExperimentNuclear physicsHigh Energy Physics - Experiment (hep-ex)0103 physical sciences[PHYS.HEXP]Physics [physics]/High Energy Physics - Experiment [hep-ex]Nuclear interaction length010306 general physicsNuclear ExperimentPhysicsTime projection chamber010308 nuclear & particles physicsSettore FIS/01 - Fisica SperimentaleFísicaCharged particlePhysics::Accelerator PhysicsHigh Energy Physics::ExperimentAtomic physicsNucleonParticle Physics - Experiment
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Measurements of the 90,91,92,94,96 Zr n, gamma cross-sections at n_TOF

2005

Neutron capture cross sections of the 90,91,92,94,96Zr have been measured over the energy range from 1 eV to 1 MeV at the spallation neutron facility n TOF at CERN in 2003. The innovative features of the neutron beam, in particular the high instantaneous flux, the high energy resolution and low background, together with improvements of the neutron sensitivity of the capture detectors make this facility unique for neutron-induced reaction cross section measurements with much improved accuracy. The preliminary results of the Zr measurements show capture resonance strengths generally smaller than in previous measurements. Peer Reviewed

Nuclear and High Energy PhysicsNeutron cross sectionsPhysics::Instrumentation and DetectorsAstrophysics::High Energy Astrophysical PhenomenaNuclear TheoryNeutron scattering[PHYS.NEXP]Physics [physics]/Nuclear Experiment [nucl-ex]7. Clean energy01 natural sciencesNeutrons -- SeccionsNeutron time-of-flight scatteringNuclear physics0103 physical sciencesNeutron cross sectionNeutrons -- MesuramentNeutron010306 general physicsNuclear ExperimentPhysicsBonner sphere010308 nuclear & particles physicsNeutrons--MeasurementNeutron stimulated emission computed tomographyNeutron temperatureNeutron capture:Física::Astronomia i astrofísica [Àrees temàtiques de la UPC]Physics::Accelerator Physics
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Neutron yield from carbon, light- and heavy-water thick targets irradiated by 40MeV deuterons

2009

Abstract Angular and energy distributions of neutrons produced by the interaction of deuterons of 40 MeV in carbon, light- and heavy-water targets, in which they are stopped, have been measured by the activation method. A discrepancy with a time-of-flight measurement for d + C has been found. The results are compared with a Monte-Carlo calculation and are discussed in the frame of building a deuteron-to-neutron converter for the SPIRAL2 radioactive ion-beam facility.

Nuclear and High Energy PhysicsNuclear TheoryActivationchemistry.chemical_element[PHYS.NEXP]Physics [physics]/Nuclear Experiment [nucl-ex]01 natural sciencesNuclear physicschemistry.chemical_compoundNeutron yield0103 physical sciencesThick target neutronyieldMonte-Carlo codeNeutronIrradiationNuclear Experiment010306 general physicsInstrumentationHeavy waterPhysics010308 nuclear & particles physicschemistryDeuteriumMonte carlo codePhysics::Accelerator PhysicsActivation methodCarbonNuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment
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