Search results for "synchrotron radiation"

showing 10 items of 146 documents

A multiscale X-ray phase-contrast tomography dataset of whole human left lung

2021

ABSTRACTTechnological advancements in X-ray imaging using bright and coherent synchrotron sources now allows to decouple sample size and resolution, while maintaining high sensitivity to the microstructure of soft, partially dehydrated tissues. The recently developed imaging technique, hierarchical phase-contrast tomography, is a comprehensive approach to address the challenge of organ-scale (up to tens of centimeters) soft tissue imaging with resolution and sensitivity down to the cellular level. Using this technique, we imaged ex vivo an entire human left lung at an isotropic voxel size of 25.08 μm along with local zooms down to 6.05 - 6.5 μm and 2.45 - 2.5 μm in voxel size. The high tiss…

MicrometreLeft lungPhase contrast tomographyMaterials sciencelawResolution (electron density)X-raySynchrotron radiationTomographySynchrotronlaw.inventionBiomedical engineering
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Geochemical Interactions of Plutonium with Opalinus Clay Studied by Spatially Resolved Synchrotron Radiation Techniques

2017

Plutonium plays an important role within nuclear waste materials because of its long half-life and high radiotoxicity. The aim of this study was to investigate with high spatial resolution the reactivity of the more oxidized forms of Pu(V,VI) within Opalinus Clay (OPA) rock, a heterogeneous, natural argillaceous rock considered as a potential repository host. A combination of synchrotron based X-ray microprobe and bulk techniques was used to study the spatial distribution and molecular speciation of Pu within OPA after diffusion and sorption processes. Microscopic chemical images revealed a pronounced impact of geochemical heterogeneities concerning the reactivity of the natural barrier mat…

MicroprobeAbsorption spectroscopyMineralogychemistry.chemical_elementSynchrotron radiation010501 environmental sciences010403 inorganic & nuclear chemistry01 natural scienceslaw.inventionPlutonium opalinus clay sorption XAS ROBLlawEnvironmental ChemistryDiffusion (business)0105 earth and related environmental sciencesChemistryRadioactive wasteSorptionGeneral ChemistryPlutoniumSynchrotron0104 chemical sciencesPlutoniumRadioactive WasteClayAluminum SilicatesSynchrotronsEnvironmental Science & Technology
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Synthesis and characterization of indium oxide at high pressures

2018

Introducción: La naturaleza es sorprendente pero a la vez limitada. A mi entender, nada tiene más potencial que aplicar el ingenio humano para modificar lo que nos rodea y crear algo completamente nuevo. La Física de la Materia Condensada es un campo que actualmente está ganando importancia en la Física moderna. En virtud de los éxitos logrados en Física de la Materia Condensada se han producido enormes avances en el campo de la electrónica cuántica, de los semiconductores y de la ciencia de materiales, teniendo como resultado numerosas aplicaciones tecnológicas que han cambiado nuestras vidas drásticamente en los últimos 50 años. Una de las ramas de la Física de la Materia Condensada es el…

Multi-anvil pressDiamond-anvil cellCharacterization under pressureOptical absorptionPressure sensorUNESCO::FÍSICAEquations of stateNanocrystallinePressure transmitting mediumBulkPressure-temperature phase diagramParis-Edinburg pressX-ray diffractioncorundum-type structure (R-3c):FÍSICA [UNESCO]Indium oxide (In2O3)Raman spectroscopycubic structure (Ia-3)High-pressure high-temperature synthesisPbcn phaseAb initio calculationsPbca phaseScanning electron microscopySynchrotron radiation sources
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Alanine films for EPR dosimetry of low-energy (1–30 keV) X-ray photons

2019

Abstract L- α -alanine has aroused considerable interest for use in radiation EPR dosimetry and has been formally accepted as a secondary standard for high-dose (kGy) and transfer dosimetry of high-energy photons and electrons. In this work, we extended the investigation of the energy response of alanine EPR films in the low energy range for X-photons (1–30 keV). Electron Paramagnetic Resonance (EPR) measurements were performed on Kodak BioMax alanine films exposed to low-energy X-rays from a Cu-, W- and Mo-targets tube operating at voltages up to 30 kV. Films were chosen because of the low penetration of the soft X-rays used. The response of alanine to low-energy X-rays was characterized e…

Nuclear and High Energy PhysicsAlanineLow energy photonsPhotonMaterials scienceAttenuationMonte Carlo methodSynchrotron radiationElectronLow energy photonAlanine; Electron paramagnetic resonance; Low energy photonsRadiation030218 nuclear medicine & medical imaginglaw.invention03 medical and health sciences0302 clinical medicinelaw030220 oncology & carcinogenesisDosimetryElectron paramagnetic resonanceAtomic physicsElectron paramagnetic resonanceInstrumentationNuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms
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Synchrotron radiation studies on luminescence of Eu2+-doped LaCl3 microcrystals embedded in a NaCl matrix

2012

Abstract LaCl3:Eu2+ microcrystals dispersed in the NaCl matrix have been obtained in the NaCl–LaCl3(1 mol.%)–EuCl3(0.1 mol.%) crystalline system. The low-temperature luminescent properties of these microcrystals have been studied upon the VUV and UV excitation by the synchrotron radiation. The spectroscopic parameters as well as decay time constants of Eu2+-doped LaCl3 host have been established. The excitation mechanism of divalent europium centers through energy transfer and reabsorption is discussed.

Nuclear and High Energy PhysicsChemistryDopingAnalytical chemistryBremsstrahlungchemistry.chemical_elementSynchrotron radiation02 engineering and technologyAtmospheric temperature range021001 nanoscience & nanotechnology01 natural sciences7. Clean energyIon0103 physical sciences010306 general physics0210 nano-technologyLuminescenceEuropiumInstrumentationExcitationNuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms
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Luminescence spectroscopy under synchrotron radiation: From SUPERLUMI to FINESTLUMI

2020

Abstract Luminescence spectroscopy under synchrotron radiation excitation is the unique tool for materials characterization. In the current work we are reporting recent activity in this research field implemented in the Finnish-Estonian beamline (FinEstBeAMS) which is installed at the 1.5 GeV storage ring of the MAX IV Laboratory at Lund, Sweden. It has been designed to cover an unusually wide energy range from ultraviolet (4.3 eV) to soft X-rays (1500 eV), which is perfectly suited for luminescence spectroscopy experiments. The past development and the present technical parameters of the luminescence experimental stations FINESTLUMI of FinEstBeAMS beamline are described. The comparison of …

Nuclear and High Energy PhysicsMaterials sciencebusiness.industrySynchrotron radiationDESY02 engineering and technology021001 nanoscience & nanotechnologymedicine.disease_cause01 natural sciencesSynchrotronlaw.inventionOpticsBeamlinelaw0103 physical sciencesmedicine010306 general physics0210 nano-technologySpectroscopyLuminescencebusinessInstrumentationStorage ringUltravioletNuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms
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On the use of grazing-incidence small-angle X-ray scattering (GISAXS) in the morphological study of ion-implanted materials.

2004

Grazing-incidence small-angle X-ray scattering has become a widely used technique for the morphological analysis of surface systems. Here it is show how this technique can be applied to a buried system, like metallic clusters in glass obtained by ion implantation. The optimization of the data-collection geometry is described as well as the details of the quantitative data analysis. An experimental example on Cu + Au-implanted glasses shows the potentiality of the technique.

Nuclear and High Energy PhysicsRadiationAmorphous metalMaterials sciencebusiness.industryScatteringSmall-angle X-ray scatteringSynchrotron radiationSmall-angle neutron scatteringIonOpticsIon implantationGrazing-incidence small-angle scatteringIon implantation Surface plasmon resonance third-order opticalbusinessInstrumentationJournal of synchrotron radiation
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Optical properties of oxygen-deficiency related centers in amorphous SiO 2 investigated by synchrotron radiation

2002

We report an investigation of the photoluminescence activity at 4.4 v eV in g -irradiated silica under UV and vacuum-UV excitation by synchrotron radiation. Our results evidence two iso-energetic contributions which can be related to two oxygen-deficient centers variants: ODC(I) and ODC(II). The first, excited within the 7.6 v eV absorption, is detected only at low temperature and has a lifetime of about 2 v ns. The second exhibits two excitation maxima peaked at 5.0 and 6.8 v eV, its amplitude decreases by a factor 2 on increasing the temperature whereas its lifetime has a value of about 4 v ns. These features give new insights on the excitation pathway of the 4.4 v eV emission involving t…

Nuclear and High Energy PhysicsRadiationPhotoluminescenceChemistryAnalytical chemistrySynchrotron radiationCondensed Matter PhysicsAmorphous solidAmplitudeNuclear magnetic resonanceExcited stateGeneral Materials ScienceIrradiationAbsorption (electromagnetic radiation)ExcitationRadiation Effects and Defects in Solids
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Time-of-flight photoelectron momentum microscopy with 80–500 MHz photon sources: electron-optical pulse picker or bandpass pre-filter

2021

Journal of synchrotron radiation 28(6), 1891 - 1908 (2021). doi:10.1107/S1600577521010511

Nuclear and High Energy PhysicsSpectrum analyzerMaterials sciencePhotonMicroscopephotoelectron diffraction550Synchrotron radiationmomentum microscopylaw.inventionOpticslawddc:550Pulse waveTime domaintime of flight spectroscopy ; momentum microscopy ; ARPES ; photoelectron diffraction ; pulse pickingpulse pickingInstrumentationMomentum (technical analysis)Radiationbusiness.industryARPESResearch PapersTime of flighttime-of-flight spectroscopyPhysics::Accelerator Physicsbusiness
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X-ray thermal-diffuse-scattering study of soft modes in paraelectricBaTiO3

1995

Anomalous x-ray thermal diffuse scattering (TDS) from the paraelectric ${\mathrm{BaTiO}}_{3}$ has been measured as a function of temperature using synchrotron radiation. Sheets of intensities that were previously reported have been confirmed. The origin of the observed TDS intensities is attributed to the soft on-(100) TA modes and overdamped [010${]}_{\mathrm{TO}}$ mode for reduced wave vector qg0.25 and 0.25, respectively. In agreement with the previous neutron inelastic scattering experiment, our results support the notion of the one-dimensionally correlated optic motion of atoms.

Nuclear magnetic resonanceMaterials sciencePhononScatteringSynchrotron radiationWave vectorNeutronSoft modesInelastic scatteringAtmospheric temperature rangeAtomic physicsPhysical Review B
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