Search results for "electron density"

showing 10 items of 428 documents

Resolution Enhancement in Phase Microscopy: a Review

2018

Quantitative phase microscopy (QPM), a technique combining phase imaging and microscopy, enables visualization of the 3-D topography in reflective samples as well as the inner structure or refractive index distribution of transparent and translucent samples. However, as in conventional optical microscopy, QPM provides either a large field of view (FOV) or a high resolution but not both. Many approaches such as oblique illumination, structured illumination and speckle illumination have been proposed to improve the spatial resolution of phase microscopy by restricting other degrees of freedom (mostly time). Therefore, the space bandwidth product (SBP) of QPM becomes enlarged. This paper aims …

Quantitative phase microscopyOpticsMaterials sciencelawbusiness.industryPhase contrast microscopyResolution (electron density)Digital holographic microscopybusinessopticslaw.invention
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The rotational spectrum of trans-DCOOD: Lamb-dip measurements, THz spectroscopy and quantum-chemical calculations

2011

Abstract The rotational spectrum of the bi-deuterated isotopologue of trans-formic acid, trans-DCOOD, was recorded at sub-Doppler resolution in the millimeter- and sub-millimeter-wave region using the Lamb-dip technique. The hyperfine structure due to the deuterium nuclei could be resolved and accurate hyperfine constants were derived. The experimental determination of the deuterium quadrupole-coupling constants was supported by high-level quantum-chemical calculations at the coupled-cluster level using large atomic-orbital basis sets. The Lamb-dip measurements were also supplemented by THz Doppler-limited measurements in order to extend the predictive capability of the available spectrosco…

Quantum chemicalChemistryTerahertz radiationResolution (electron density)Analytical chemistryLAMB-DIP TECHNIQUEGeneral Physics and AstronomyHYPERFINE STRUCTUREDeuteriumrotational spectroscopyRotational spectrumtrans-DCOODMillimeterIsotopologueAstrophysics::Earth and Planetary AstrophysicsPhysics::Atomic PhysicsPhysical and Theoretical ChemistryAtomic physicsHyperfine structureQUANTUM-CHEMICAL CALCULATIONS
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Unraveling the kinetics and molecular mechanism of gas phase pyrolysis of cubane to [8]annulene

2020

The kinetic and electron density flows are studied theoretically for the gas phase pyrolysis of cubane via its cage opening to reach bicyclooctatriene and then thermal rearrangement of bicyclooctatriene to produce [8]annulene which is the experimentally observed major product. The observed kinetic data at the MN15-L/maug-cc-pVTZ level of theory were in good agreement with the experimental results as compared to the CBS-QB3 method. The cage opening and the thermal rearrangement steps at the experimentally employed temperature of 520 K were exergonic and exothermic. The atmospheric rate constants calculated by means of the RRKM theory show that the cage opening is the rate-determining step. T…

RRKM theoryExergonic reactionchemistry.chemical_classificationElectron densityMaterials science010304 chemical physicsDouble bondGeneral Chemical EngineeringGeneral ChemistryAnnulene010402 general chemistry01 natural sciences0104 chemical scienceschemistry.chemical_compoundReaction rate constantchemistryCubane0103 physical sciencesPhysical chemistrySingle bondRSC Advances
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Image enhancement in photoemission electron microscopy by means of imaging time-of-flight analysis

2004

Abstract Photoemission electron microscopy (PEEM) is widely used in combination with synchrotron sources as a powerful tool to observe chemical and magnetic properties of metal and semiconductor surfaces. Presently, the resolution limit of these instruments using soft-X-ray excitation is limited to about 50 nm, because of the chromatic aberation of the electron optics used. Various sophisticated approaches have thus been reported for enhancing the spatial resolution in photoemission electron microscopy. This work demonstrates the use of a simple imaging energy filter based on electron time-of-flight (ToF) selection. The spatial resolution could be improved dramatically, even though the inst…

RadiationChemistrybusiness.industryInverse photoemission spectroscopyResolution (electron density)Scanning confocal electron microscopyCondensed Matter PhysicsAtomic and Molecular Physics and OpticsElectronic Optical and Magnetic MaterialsPhotoemission electron microscopyOpticsElectron tomographyScanning transmission electron microscopyEnergy filtered transmission electron microscopyPhysical and Theoretical ChemistryHigh-resolution transmission electron microscopybusinessSpectroscopyJournal of Electron Spectroscopy and Related Phenomena
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NanoESCA: imaging UPS and XPS with high energy resolution

2005

Abstract A novel imaging electron spectrometer has been used for laterally resolved ultraviolet photoelectron spectroscopy (UPS) and X-ray photoelectron spectroscopy (XPS) in the soft X-ray range. The instrument is based on a high-resolution emission microscope optics using a cathode lens and an imaging dispersive analyser. The analyser is corrected for the leading aberration term ( α 2 -term) by means of two hemispherical analysers in antisymmetric configuration with an appropriate transfer lens. Small-area spectra as well as energy-filtered images have been taken in the soft X-ray range for a meteorite sample and in the range of the d-band of a Cu polycrystal. An energy resolution of 106 …

RadiationMicroscopeElectron spectrometerSpectrometerChemistryPhotoemission spectroscopyResolution (electron density)Analytical chemistryCondensed Matter PhysicsElectron spectroscopyAtomic and Molecular Physics and OpticsElectronic Optical and Magnetic Materialslaw.inventionX-ray photoelectron spectroscopylawPhysical and Theoretical ChemistrySpectroscopyUltraviolet photoelectron spectroscopyJournal of Electron Spectroscopy and Related Phenomena
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Fast elemental mapping and magnetic imaging with high lateral resolution using a novel photoemission microscope

1998

Abstract Using tunable soft X-ray synchrotron radiation and a new-generation photoemission electron microscope with integral sample stage and microarea selector, elemental images and local XANES spectra have been measured. Given the present conditions (PM3 at BESSY), the lateral resolution was in the range of 130 nm with the potential of considerable improvement with high-brilliance sources (a base resolution of 25 nm was obtained in threshold photoemission). Measurements at the oxygen K-edge demonstrate that differences in the local chemical environment of the emitter atom are clearly revealed and can thus be used as a fingerprint technique for its chemical state and geometrical surroundin…

RadiationMicroscopeMagnetic domainbusiness.industryMagnetic circular dichroismChemistryResolution (electron density)Analytical chemistrySynchrotron radiationAngle-resolved photoemission spectroscopyCondensed Matter PhysicsAtomic and Molecular Physics and OpticsXANESElectronic Optical and Magnetic Materialslaw.inventionOpticslawPhysical and Theoretical ChemistryElectron microscopebusinessSpectroscopyJournal of Electron Spectroscopy and Related Phenomena
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Multipole WIEN-filter for a high-resolution X-PEEM

1997

Abstract The development and construction of an X-PEEM with integral multipole WIEN-filter for spectromicroscopy with high lateral resolution is presented. All relevant electron-optical properties of the filter have been examined by field and trajectory calculations. Electric and magnetic multipole components (dipole, quadrupole and hexapole) can be chosen independently from each other, thus allowing electron-optical corrections. Theoretical values for the lateral resolution are in the range of 10 nm, experimental values of ≤25 nm have been achieved using the column without filter. The instrument is designed in particular for the use of Sychrotron radiation as well as new, high-brilliance l…

RadiationWien filterField (physics)business.industryChemistryResolution (electron density)RadiationCondensed Matter PhysicsAtomic and Molecular Physics and OpticsElectronic Optical and Magnetic MaterialsDipoleOpticsFilter (video)QuadrupolePhysical and Theoretical ChemistryAtomic physicsbusinessMultipole expansionSpectroscopyJournal of Electron Spectroscopy and Related Phenomena
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Monolayer Structure of Arachidic Acid on Graphite

2010

The self-assembly of arachidic acid (C(19)H(39)COOH) at the liquid solid interface between 1-phenyloctane (C(6)H(5)(CH(2))(7)CH(3)) and highly oriented pyrolytic graphite (HOPG) is studied by scanning tunneling microscopy (STM) to identify the structure of the monomolecular film. We observe the formation of highly ordered domains with molecules oriented in three different orientations compatible with the symmetry of the HOPG substrate, a spontaneous enantiomeric separation of the pro-chiral molecules, and reveal structural details with submolecular resolution. To determine the surface unit cell with an intrinsic calibration to the substrate atomic structure, the intermolecular distance is p…

Resolution (electron density)Substrate (electronics)530Surfaces Coatings and FilmsElectronic Optical and Magnetic Materialslaw.inventionCrystallographychemistry.chemical_compoundGeneral EnergyHighly oriented pyrolytic graphitechemistrylawMonolayerArachidic acidMoleculeGraphitePhysical and Theoretical ChemistryScanning tunneling microscope
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Crystallization and Preliminary X-Ray Analysis of Rotavirus Protein VP6

1998

ABSTRACT As a first step to gain insight into the structure of the rotavirus virion at atomic resolution, we report here the expression, purification, and crystallization of recombinant rotavirus protein VP6. This protein has the property of polymerizing in the form of tubular structures in solution which have hindered crystallization thus far. Using a combination of electron microscopy and small-angle X-ray scattering, we found that addition of Ca 2+ at concentrations higher than 100 mM results in depolymerization of the tubes, leading to an essentially monodisperse solution of trimeric VP6 even at high protein concentrations (higher than 10 mg/ml), thereby enabling us to search for crysta…

RotavirusProtein ConformationvirusesRecombinant Fusion ProteinsImmunologyDispersityGene ExpressionTrimerSpodopteraBiologyCrystallography X-RayMicrobiologylaw.inventionchemistry.chemical_compoundCapsidProtein structurelawVirologyAnimal VirusesAnimalsCrystallizationAntigens ViralDepolymerizationResolution (electron density)virus diseasesCrystallographyMonomerBiochemistrychemistryPolymerizationInsect ScienceCapsid ProteinsCattleCrystallizationJournal of Virology
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Relationship between resolution and accuracy of four intraoral scanners in complete-arch impressions

2018

Background The scanner does not measure the dental surface continually. Instead, it generates a point cloud, and these points are then joined to form the scanned object. This approximation will depend on the number of points generated (resolution), which can lead to low accuracy (trueness and precision) when fewer points are obtained. The purpose of this study is to determine the resolution of four intraoral digital imaging systems and to demonstrate the relationship between accuracy and resolution of the intraoral scanner in impressions of a complete dental arch. Material and methods A master cast of the complete maxillary arch was prepared with different dental preparations. Using four di…

ScannerComputer sciencePoint cloud02 engineering and technology03 medical and health sciencessymbols.namesake0302 clinical medicineSoftware0202 electrical engineering electronic engineering information engineeringmedicineComputer visionGeneral DentistryProsthetic Dentistrybusiness.industryResearchResolution (electron density)Digital imaging030206 dentistry:CIENCIAS MÉDICAS [UNESCO]Pearson product-moment correlation coefficientImpressionDental archmedicine.anatomical_structureUNESCO::CIENCIAS MÉDICASsymbols020201 artificial intelligence & image processingArtificial intelligencebusiness
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