Search results for "Ion beam"

showing 10 items of 297 documents

Determination of molecular stopping cross section of 12C, 16O, 28Si, 35Cl, 58Ni, 79Br, and 127I in silicon nitride

2015

Abstract Silicon nitride is a technologically important material in a range of applications due to a combination of important properties. Ion beam analysis techniques, and in particular, heavy ion elastic recoil detection analysis can be used to determine the stoichiometry of silicon nitride films, which often deviates from the ideal Si3N4, as well as the content of impurities such as hydrogen, even in the presence of other materials or in a matrix containing heavier elements. Accurate quantification of IBA results depends on the basic data used in the data analysis. Quantitative depth profiling relies on the knowledge of the stopping power cross sections of the materials studied for the io…

Silicon nitrideNuclear and High Energy PhysicsIon beam analysisMaterials scienceta114HydrogenIon beam analysischemistry.chemical_elementHeavy ionsIonElastic recoil detectionchemistry.chemical_compoundchemistrySilicon nitrideImpurityThin filmAtomic physicsStopping powerInstrumentationStoichiometryNuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms
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Lithographic fabrication of soda-lime glass based microfluidics

2013

Abstract Glass is an important material for chemical processing and analysis because of its relatively low cost, mechanical strength, chemical inertness, optical transparency, and electrical insulation and temperature resistance far beyond that of most polymeric materials. We have investigated techniques for direct writing with MeV ions on soda-lime glass as well as capping procedures to form closed buried channels suitable for high-pressure driven flow. Exposure and development of open-channel structures was studied using a combination of programmable proximity aperture lithography and different developers. Unlike our previous work on MeV ion beam lithography of natural silica where an 8% …

Soda-lime glassNuclear and High Energy PhysicsFabricationAqueous solutionMaterials scienceta114Precipitation (chemistry)Hydrostatic pressureOxideIon beam lithographychemistry.chemical_compoundchemistryChemical engineeringInstrumentationLithographyNuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms
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Further RF Measurements on the Superconducting 217 MHz CH Demonstrator Cavity for a CW Linac at GSI

2019

Proceedings of the 10th International Particle Accelerator Conference The 10th International Particle Accelerator Conference, Melbourne, Australia, 19 May 2019 - 24 May 2019; Geneva : JACoW Publishing, CERN 2826-2829 (2019). doi:10.18429/JACOW-IPAC2019-WEPRB014

SuperconductivityHistoryMC7: Accelerator TechnologyMaterials sciencebusiness.industryPhase (waves)Injector530Linear particle acceleratorAccelerator PhysicsComputer Science ApplicationsEducationlaw.inventionIonHeavy ion beamlawOptoelectronicsContinuous waveddc:530businessBeam (structure)
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Critical current modulation induced by an electric field in superconducting tungsten-carbon nanowires

2021

The critical current of a superconducting nanostructure can be suppressed by applying an electric field in its vicinity. This phenomenon is investigated throughout the fabrication and electrical characterization of superconducting tungsten-carbon (W-C) nanostructures grown by Ga+ focused ion beam induced deposition (FIBID). In a 45 nm-wide, 2.7 μm-long W-C nanowire, an increasing side-gate voltage is found to progressively reduce the critical current of the device, down to a full suppression of the superconducting state below its critical temperature. This modulation is accounted for by the squeezing of the superconducting current by the electric field within a theoretical model based on th…

SuperconductivityMultidisciplinaryMaterials scienceCondensed matter physicsScienceQRNanowireCritical valueFocused ion beamArticleSuperconducting properties and materialsSputteringCondensed Matter::SuperconductivityElectric fieldSuperconducting devicesMedicineElectron-beam lithographyVoltageScientific Reports
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Hybrid chalcogenide nanoparticles: 2D-WS2 nanocrystals inside nested WS2 fullerenes.

2013

The MOCVD assisted formation of nested WS2 inorganic fullerenes (IF-WS2) was performed by enhancing surface diffusion with iodine, and fullerene growth was monitored by taking TEM snapshots of intermediate products. The internal structure of the core–shell nanoparticles was studied using scanning electron microscopy (SEM) after cross-cutting with a focused ion beam (FIB). Lamellar reaction intermediates were found occluded in the fullerene particles. In contrast to carbon fullerenes, layered metal chalcogenides prefer the formation of planar, plate-like structures where the dangling bonds at the edges are stabilized by excess S atoms. The effects of the reaction and annealing temperatures o…

Surface diffusionMaterials scienceFullereneChalcogenideScanning electron microscopeDangling bondNanoparticleFocused ion beamInorganic Chemistrychemistry.chemical_compoundCrystallographyChemical engineeringchemistryPhysics::Atomic and Molecular ClustersLamellar structureDalton transactions (Cambridge, England : 2003)
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Alternative approach to populate and study the $^{229}Th$ nuclear clock isomer

2019

A new approach to observe the radiative decay of the $^{229}$Th nuclear isomer, and to determine its energy and radiative lifetime, is presented. Situated at a uniquely low excitation energy, this nuclear state might be a key ingredient for the development of a nuclear clock, a nuclear laser and the search for time variations of the fundamental constants. The isomer's $\gamma$ decay towards the ground state will be studied with a high-resolution VUV spectrometer after its production by the $\beta$ decay of $^{229}$Ac. The novel production method presents a number of advantages asserting its competitive nature with respect to the commonly used $^{233}$U $\alpha$-decay recoil source. In this …

Technology and EngineeringIon beamFOS: Physical sciencesNuclear isomernucl-ex7. Clean energy01 natural sciences010305 fluids & plasmasNuclear physicsRecoil0103 physical sciencesEXCITATIONRadiative transferNuclear Physics - Experimentddc:530Nuclear Experiment (nucl-ex)010306 general physicsLASER SPECTROSCOPYNuclear ExperimentNuclear ExperimentPhysicsnuclear structure and decaysAtomic clockChemistryPhysics and AstronomySTATESbeta decayGround stateisomer decaysydinfysiikkaDECAYEnergy (signal processing)ExcitationTRANSITION
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Sulfur isotope ratio measurements of individual sulfate particles by NanoSIMS

2008

Abstract The sulfur isotopic compositions of barite (BaSO4), anhydrite (CaSO4), gypsum (CaSO4·2H2O), mascagnite ((NH4)2SO4), thenardite (Na2SO4), boetite (K2SO4), epsomite (MgSO4·7H2O), magnesium sulfate (MgSO4·xH2O) and cysteine (an amino acid) were determined with a Cameca NanoSIMS 50 ion microprobe employing a Cs+ primary ion beam and measuring negative secondary ions. This ion microprobe permits the analysis of sulfur isotope ratios in sulfates on 0.001–0.5 ng of sample material, enabling the analysis of individual S-bearing particles with diameters as small as 500 nm. The grain-to-grain reproducibility of measurements is typically 5‰ (1σ) for micron-sized grains,

ThenarditeMicroprobeAnhydriteIon beamMagnesiumEpsomiteAnalytical chemistrychemistry.chemical_elementCondensed Matter PhysicsSulfurchemistry.chemical_compoundchemistryPhysical and Theoretical ChemistrySulfateInstrumentationSpectroscopyInternational Journal of Mass Spectrometry
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Reconsidering the accuracy of X-ray fluorescence and ion beam based methods when used to measure the thickness of ancient gildings

2017

Since at least 5000 years ago, gilding techniques have been used for decoration purposes or to make artefacts appear as made of solid gold. Investigation of ancient gildings inevitably requires measuring their thickness, which is usually done either through the observation of cross-sections or by methods such as Rutherford backscattering spectroscopy, particle-induced X-ray emission and X-ray fluorescence. Whereas the former method requires sampling, the latter ones are non-invasive and therefore preferable. These non-invasive methods, however, measure the number of atoms per unit area, which can be converted into thickness only if the density is known. So far this has not been considered a…

ThickneIon beamScanning electron microscopeGildingXRFGildingMineralogyX-ray fluorescence02 engineering and technology01 natural sciencesAnalytical ChemistrySEM-EDSOpticsElectroplatingPorositySpectroscopyInstrumentationSpectroscopyDepletion gildingChemistrybusiness.industry010401 analytical chemistryIBA;SEM-EDS;Gilding;Thickness;XRF021001 nanoscience & nanotechnologyAtomic and Molecular Physics and Optics0104 chemical sciencesIBA0210 nano-technologybusinessThicknessSpectrochimica Acta - Part B: Atomic Spectroscopy 135: 42-47 (2017)
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Intracavity Frequency Doubling and Difference Frequency Mixing for Pulsed ns Ti:Sapphire Laser Systems at On-Line Radioactive Ion Beam Facilities

2015

Intra-cavity second harmonic generation of a Titanium:sapphire (Ti:sa) laser system has been used to improve the conversion efficiency to the second harmonic. Over the course of several experiments performance data spanning the whole wavelength range of a Ti:sa has been collected, which may be used as a guideline for future experiments. An average output power of up to 3.7 W was achieved, resulting in a conversion efficiency of >75 % to the second harmonic. A wavelength coverage from 340-525 nm has been demonstrated. To extend the wavelength range of the solid state laser system, difference frequency mixing has been applied to the intra-cavity doubled light and the fundamental output of a s…

Ti:sapphireMaterials scienceta114Ion beambusiness.industryEnergy conversion efficiencyTi:sapphire laserSecond-harmonic generationLaserlaw.inventionWavelengthOpticsSolid-state laserlawfrequency mixingresonance ionization spectroscopyHarmonicbusinessProceedings of the Conference on Advances in Radioactive Isotope Science (ARIS2014)
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In-situ high spatial resolution LA-MC-ICPMS 230Th/U dating enables detection of small-scale age inversions in speleothems

2017

Abstract We present an in-situ method for Th and U isotope measurements by laser ablation multi-collector inductively coupled plasma mass spectrometry (LA-MC-ICPMS) to determine possible age inversions of stalagmites, using a 213 nm Nd:YAG laser connected to an MC-ICPMS. Due to the low ion beam intensity of 230 Th (20–120 counts per second, cps), we carefully optimized the operating parameters to get highest possible ion beam intensities, i.e., laser fluence (25 J cm −2 ), spot size (110 μm), pulse repetition rate (20 Hz), scan speed (4 μm s −1 ), integration time (1000 s), and He and Ar gas flow (∼0.9 L min −1 and ∼0.6 L min −1 respectively). A precision (2 relative standard error, 2RSE) o…

Time delay and integrationIon beamAnalytical chemistryMineralogy010502 geochemistry & geophysics01 natural scienceslaw.inventionGeochemistry and PetrologylawImage resolutionInductively coupled plasma mass spectrometry0105 earth and related environmental sciencesEarth-Surface ProcessesReproducibilityLaser ablationChemistry010401 analytical chemistrylcsh:QE1-996.5GeologySecular equilibriumGeotechnical Engineering and Engineering GeologyLaserSpeleothemLaser ablation0104 chemical scienceslcsh:Geology230Th/U datingGeophysicsMC-ICPMS
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