Search results for "Time of Flight"

showing 10 items of 114 documents

Neutron transmission measurements at nELBE

2020

International Conference on Nuclear Data for Science and Technology, ND 2019, Bejing, China, 19 May 2019 - 24 May 2019; The European physical journal / Web of Conferences 239, 01006 (2020). doi:10.1051/epjconf/202023901006

Astrophysics::High Energy Astrophysical PhenomenaQC1-999FluxNeutron transmission53001 natural sciences238UNuclear physicsXe0103 physical sciencesNeutronddc:530High pressure gas010306 general physicsPhysicsHe010308 nuclear & particles physicsNePhysicsOPtnELBE time of flight faciltiyneutron total cross sectionstransmission measurementNatBar (unit)
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2020

Abstract. Aerosol mass spectrometers (AMS) are frequently applied in atmospheric aerosol research in connection with climate, environmental or health-related projects. This is also true for the measurement of the organic fraction of particulate matter, still the least understood group of components contributing to atmospheric aerosols. While quantification of the organic and/or inorganic aerosol fractions is feasible, more detailed information about individual organic compounds or compound classes can usually not be provided by AMS measurements. In this study, we present a new method to detect organic peroxides in the particle phase in real-time using an AMS. Peroxides (ROOR') are of high i…

Atmospheric ScienceOzone010504 meteorology & atmospheric sciencesAnalytical chemistryrespiratory system010501 environmental sciencesParticulatesMass spectrometrycomplex mixtures01 natural sciencesAerosolchemistry.chemical_compoundTime of flightchemistryParticleAerosol mass spectrometryTriphenylphosphine oxide0105 earth and related environmental sciencesAtmospheric Measurement Techniques
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Mass measurements of very high accuracy by time-of-flight ion cyclotron resonance of ions injected into a penning trap

1989

Abstract The possibility of absolute mass measurements using time-of-flight detection of ion cyclotron resonance on ions injected into a Penning trap has been demonstrated. Resolving powers of 2 million have been achieved, with accuracies of about 0.5 ppm. Absolute accuracy is obtained by direct observation of the sum frequency of the cyclotron and the magnetron motions through the use of an azimuthal quadrupole r.f. field to transform initial magnetron motion into cyclotron motion. Imperfections of the Penning trap leading to systematic errors are discussed. The system has been designed specifically to measure the masses of radionuclides produced at the on-line isotope separator ISOLDE. Wi…

ChemistryCyclotronPenning trapFourier transform ion cyclotron resonancelaw.inventionIonTime of flightlawQuadrupoleDetectors and Experimental TechniquesAtomic physicsNuclear ExperimentSpectroscopyRadioactive decayIon cyclotron resonanceInternational Journal of Mass Spectrometry and Ion Processes
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Time-of-flight photoemission electron microscopy – a new way to chemical surface analysis

2001

Abstract The time structure of synchrotron radiation at BESSY I (Berlin) was utilised to operate a photoemission electron microscope in the time-of-flight mode. The electrons that are emitted from the sample surface with different energies are dispersed in a drift tube subsequent to the imaging optics. Two ways of fast image detection have been explored, a fast gated intensified CCD camera (800 ps gate time) and a special counting electronics in combination with a 3D (x,y,t)-resolving delay line detector ( time resolution ps). The latter device has a lateral resolution of about 50 μm in the image plane being equivalent to 1000 pixels along the image diagonal. An energy resolution of 400 meV…

Chemistrybusiness.industryInverse photoemission spectroscopyResolution (electron density)Synchrotron radiationSurfaces and InterfacesElectronImage planeCondensed Matter PhysicsSurfaces Coatings and FilmsPhotoemission electron microscopyTime of flightOpticsMaterials ChemistryImage sensorbusinessSurface Science
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Gas chromatography and mass spectroscopy techniques for the detection of chemical contaminants and residues in foods

2017

Gas chromatography-mass spectrometry (GC-MS) is a cornerstone for qualitative and quantitative analysis of food contaminants and residues. It is fast and sensitive, provides a high peak capacity, and allows determination of thermally stable and volatile compounds. Recent research has resulted in better chromatographic columns and methods for sample preparation that enable a significant expansion of the application range of GC-MS, profiling strategies for sample characterization being identified as important future drivers. Newer detection/separation solutions, such as fast chromatography, comprehensive two-dimensional GC (GC × GC), triple quadrupole MS, time-of-flight MS or orbitrap, atmosp…

ChromatographyChemistry010401 analytical chemistryAnalytical chemistryAtmospheric-pressure chemical ionization04 agricultural and veterinary sciencesOrbitrapMass spectrometry040401 food science01 natural sciences0104 chemical scienceslaw.inventionTriple quadrupole mass spectrometerTime of flight0404 agricultural biotechnologylawIonizationTriple quadrupole mass spectrometryChemical contaminantsSample preparationIon trapGas chromatographyGas chromatography–mass spectrometry
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MALDI-TOF characterization of macromonomers

1996

Methacryloyl endfunctionalized oligostyrene macromonomers were characterized by matrix assisted laser desorption ionization/time of flight (MALDI-TOF) spectroscopy and by isocratic and gradient high performance liquid chromatography (HPLC). The molar mass distribution derived by the different techniques coincide for the investigated oligomers. Mixing experiments revealed that the MALDI-TOF peak areas do not necessarily represent the mixing ratio of the components. Combination of gradient HPLC and MALDI-TOF has resolved the chemical composition of the coupling products formed by reaction of the living anion with oxygen.

ChromatographyPolymers and PlasticsChemistryOrganic ChemistryMatrix isolationAnalytical chemistryMass spectrometryMacromonomerHigh-performance liquid chromatographyTime of flightMatrix-assisted laser desorption/ionizationMaterials ChemistryMolar mass distributionSpectroscopyMacromolecular Rapid Communications
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Automatic Calibration of an Industrial RGB-D Camera Network Using Retroreflective Fiducial Markers

2019

This paper describes a non-invasive, automatic, and robust method for calibrating a scalable RGB-D sensor network based on retroreflective ArUco markers and the iterative closest point (ICP) scheme. We demonstrate the system by calibrating a sensor network comprised of six sensor nodes positioned in a relatively large industrial robot cell with an approximate size of 10 m × 10 m × 4 m . Here, the automatic calibration achieved an average Euclidean error of 3 c m at distances up to 9.45 m . To achieve robustness, we apply several innovative techniques: Firstly, we mitigate the ambiguity problem that occurs when detecting a marker at long range or low resolution by comparing the…

Computer scienceComputingMethodologies_IMAGEPROCESSINGANDCOMPUTERVISION02 engineering and technologylcsh:Chemical technologytime-of-flightBiochemistryArticleVDP::Food science and technology: 600Analytical Chemistrylaw.inventionIndustrial robotlawRegion of interestRobustness (computer science)automatic calibration0202 electrical engineering electronic engineering information engineeringCalibrationVDP::Næringsmiddelteknologi: 600lcsh:TP1-1185Computer visionElectrical and Electronic EngineeringInstrumentationbusiness.industryambiguity problemIterative closest point3D sensors020207 software engineeringretroreflective markersAtomic and Molecular Physics and OpticsTime of flightTheoryofComputation_MATHEMATICALLOGICANDFORMALLANGUAGESRGB color model020201 artificial intelligence & image processingArtificial intelligencebusinessFiducial markerWireless sensor networkSensors
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Ultra-high performance liquid chromatography-quadrupole time-of-flight mass spectrometry to identify contaminants in water: an insight on environment…

2013

Ultra-high pressure liquid chromatography-quadrupole time-of-flight mass spectrometry (UHPLC-QqTOF-MS) acquiring full scan MS data for quantification, and automatic data dependent information product ion spectra (IDA-MS/MS) without any predefinition of the ions by the user was checked for identifying organic contaminants in water samples. The use of a database with more than 2000 compounds achieved high confidence results for a wide number of contaminants based upon retention time, accurate mass, isotopic pattern and MS/MS library searching. More than 20 contaminants, mostly pharmaceuticals, but also mycotoxins and polyphenols were unambiguously identified. Furthermore, the combination of s…

Detection limitChromatographyTime FactorsChemistryOrganic ChemistryAnalytical chemistryWaterGeneral MedicineContaminationMass spectrometryBiochemistryLibrary searchingAnalytical ChemistryTriple quadrupole mass spectrometerMolecular WeightRiversTandem Mass SpectrometryPrincipal component analysisQuadrupole time of flightUltra high performancePesticidesChromatography High Pressure LiquidWater Pollutants ChemicalJournal of chromatography. A
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High resolution 80Se(n,γ) cross section measurement at CERN n_TOF and development of the novel i-TED detection system

2022

El proceso (-s) de captura lenta de neutrones es responsable de la formación de la mitad de los elementos más pesados ​​que el hierro en el universo. A pesar de la larga escala de tiempo de este proceso, la larga vida media de algunos isótopos inestables a lo largo del flujo de reacción del proceso-s crea puntos de ramificación que conducen a una división de la ruta de la nucleosíntesis. 79Se (t1/2 = 3.27 x 10^5 y) representa uno de los núcleos ramificados-s más relevantes y debatidos por dos razones principales. Por un lado, la existencia de estados excitados de baja energía en el 79Se, cuya población puede variar con la temperatura del medio estelar, hace que el patrón de abundancia local…

Dynamic Electronic Collimationbranching pointPETsys Electronicsnucleosynthesisi-TEDprompt-gammaUNESCO::FÍSICA::Física atómica y nuclear ::Física nuclear experimental bajas energíasneutron capture cross sectionnuclear physics79Se:FÍSICA::Física atómica y nuclear ::Física nuclear experimental bajas energías [UNESCO]time of flightmonolithic scintillation crystalMACStotal energy detectorsbackground rejectionsilicon photomultipliers-processCompton camera80Se
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Measurement of drift mobilities in amorphous organic films using the Time of Flight method

2004

We apply the Time of Flight (TOF) technique to study carrier mobility in N, N’-diphenyl-N,N’-bis(3-methylphenyl) -1,1-biphenyl-4,4’-diamine (TPD) and tris(8-hydroxyquinolato) aluminium (Alq 3 ). These materials are two examples of, respectively, hole and electron transporting molecular materials. Measurements are performed in free air or under vacuum varying the experimental parameters such as laser pulse intensity and single shot irradiation. We observe a transition from dispersive to non dispersive transport changing the experimental conditions.

Electron mobilityAnalytical chemistrychemistry.chemical_elementElectronLaserTime of Flight (TOF) charge carrier mobility organic molecular semiconductorsSettore ING-INF/01 - ElettronicaAmorphous solidlaw.inventionTime of flightchemistryAluminiumlawIrradiationPulse intensity
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