Search results for "Toe"

showing 10 items of 3824 documents

Electronic exchanges between adsorbed Ni atoms and TiO2(110) surface evidenced by resonant photoemission

2011

Abstract Nickel was deposited on stoichiometric TiO2(1 1 0) surface in the 0.02–2.1 equivalent monolayer (eqML) range and analyzed by means of photoemission and resonant photoemission. In the case of very low coverage (lower than 0.1 eqML), deposited nickel reacts with the surface through an electronic transfer from nickel atoms towards titanium ions. This exchange caused the filling of unoccupied Ti3d states leading to the increase of a peak in the TiO2 band gap. These states can be better characterized through resonant photoemission experiments at the Ti 3p → 3d absorption edge: for very low coverage, these states in the TiO2 band gap have resonant behavior of Ti3d electrons rather than N…

RadiationMaterials scienceBand gapInverse photoemission spectroscopychemistry.chemical_elementAngle-resolved photoemission spectroscopyCondensed Matter PhysicsAtomic and Molecular Physics and OpticsElectronic Optical and Magnetic MaterialsIonNickelAbsorption edgechemistryMonolayerPhysical and Theoretical ChemistryAtomic physicsSpectroscopyTitaniumJournal of Electron Spectroscopy and Related Phenomena
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Spectral Measurement of Photon Emission from Individual Gold Nanoparticles Using Scanning Tunneling Microscopy

2016

The light emission spectra of individual Au nanoparticles induced by a scanning tunneling microscope (STM) have been investigated. Two-dimensional ensembles of tunnel-coupled Au particles were prepared by thermal evaporation onto a native oxide silicon wafer in ultrahigh vacuum (10 – 9 mbar). Our STM measurements show a single peak at photon energy 1.6 eV in the tunneling mode and two peaks at 2.2 eV (connected with the Mie plasmon) and 1.45 eV (a new peak which was not discussed in literature before) in the field emission mode.

RadiationMaterials scienceGold nanoparticle010405 organic chemistrybusiness.industryAnalytical chemistryElectron-photon spectroscopy010402 general chemistryCondensed Matter Physics01 natural sciencesElectrochemical scanning tunneling microscope0104 chemical scienceslaw.inventionPhoton emissionColloidal goldlawComputer Science::Systems and ControlCondensed Matter::SuperconductivityScanning ion-conductance microscopyOptoelectronicsGeneral Materials ScienceScanning tunneling microscopebusinessScanning tunneling microscope (STM)
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Photoemission time-of-flight spectromicroscopy of Ag nanoparticle films on Si(111)

2004

Abstract Time-of-flight photoemission electron microscopy was used to measure spatially resolved energy distribution curves of electrons emitted from Ag nanoparticle films with different mass thicknesses. Two-photon photoemission (2PPE) was induced by femtosecond laser pulse excitation with 3.1 eV photon energy and 200 fs pulse width. Regions of Ag nanoparticles with different average sizes and one region with a continuous 100 nm thick Ag film were deposited as a stepped wedge on a Si(1 1 1) substrate. Upon laser excitation the nanoparticle films exhibit a very high electron emission yield in the images, whereas the uncovered Si surface and the continuous Ag film are dark. The time-of-fligh…

RadiationMaterials scienceInverse photoemission spectroscopyAnalytical chemistryPhysics::OpticsNanoparticleAngle-resolved photoemission spectroscopyPhoton energyCondensed Matter PhysicsMolecular physicsAtomic and Molecular Physics and OpticsElectronic Optical and Magnetic MaterialsCondensed Matter::Materials ScienceTime of flightPhotoemission electron microscopyCondensed Matter::SuperconductivityFemtosecondPhysical and Theoretical ChemistrySpectroscopyPlasmonJournal of Electron Spectroscopy and Related Phenomena
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Multiphoton photoemission electron microscopy using femtosecond laser radiation

2002

Abstract The interaction of intense, pulsed laser radiation with surfaces results in non-linear optical effects that are responsible for emission of electrons even if the photon energies are below the work function. In the present study, photoelectrons have been excited by means of femtosecond laser pulses from a frequency doubled Ti:sapphire laser with a photon energy of 3.1 eV. The spatial distribution of the photo emitted electrons was imaged using a photoemission electron microscope. All samples exhibit centres of enhanced second or higher order photoemission yield, so called ‘hot spots’. These ‘hot spots’ were preferentially excited with s-polarised light. This behaviour may be explain…

RadiationMaterials scienceInverse photoemission spectroscopyPhysics::OpticsAngle-resolved photoemission spectroscopyPhoton energyPhotoelectric effectCondensed Matter PhysicsLaserAtomic and Molecular Physics and OpticsElectronic Optical and Magnetic Materialslaw.inventionPhotoemission electron microscopylawSecondary emissionFemtosecondPhysical and Theoretical ChemistryAtomic physicsSpectroscopyJournal of Electron Spectroscopy and Related Phenomena
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Surface magnetism studied by photoelectron spectromicroscopy with high spatial and time resolution

2004

Abstract Photoemission electron microscopy (PEEM) is widely used for the study of magnetic surfaces and thin films. Ferromagnetic and antiferromagnetic microstructures are investigated exploiting magnetic circular and linear dichroism in the soft X-ray range using tuneable synchrotron radiation. Local dichroism spectroscopy gives access to magnetic moments of the elements in compounds or multilayer materials. Beyond these achievements, the method bears a high future potential with respect to an increased lateral resolution via aberration correction of the electron optics and a high time resolution in the 100 ps range for the study of dynamic processes. In addition, photoelectron spin polari…

RadiationMaterials scienceMagnetic momentCondensed matter physicsMagnetismAnalytical chemistrySynchrotron radiationDichroismCondensed Matter PhysicsLinear dichroismAtomic and Molecular Physics and OpticsElectronic Optical and Magnetic MaterialsCondensed Matter::Materials SciencePhotoemission electron microscopyFerromagnetismElectron opticsPhysical and Theoretical ChemistrySpectroscopyJournal of Electron Spectroscopy and Related Phenomena
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Photoemission microscopy with microspot-XPS by use of undulator radiation and a high-throughput multilayer monochromator at BESSY

1999

We present a new experiment for photoelectron microspectroscopy by use of undulator radiation, which has been set up at the beamline U2 at the Berlin electron storage ring BESSY 1. This approach employs a non-imaging simulated hemispherical electron energy analyser attached to an imaging photoemission electron microscope (FOCUS IS-PEEM) with integrated microarea selector. The photoemission microscope exhibits a lateral resolution of 25 nm (with 4.9 eV UV-excitation), while the resolution with incident synchrotron radiation in the soft X-ray range is about 100-120 nm (mainly due to chromatic aberrations). Photoemission microscopy as well as photoelectron microspectroscopy of selected areas o…

RadiationMaterials scienceMicroscopeEUV multilayer opticsbusiness.industryExtreme ultraviolet lithographySynchrotron radiationUndulatorGratingCondensed Matter Physicsmicroarea XPSAtomic and Molecular Physics and Opticsphotoemission microscopyElectronic Optical and Magnetic Materialslaw.inventionOpticsX-ray photoelectron spectroscopylawBlazed gratingPhysical and Theoretical ChemistrybusinessSpectroscopyMonochromator
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Multicolor photon emission from organic thin films on different substrates

2016

Abstract Thin films of 1-pentyl-2 / ,3 / -difluoro-3 /// -methyl-4 //// -octyl- p -quinquephenyl and 9,10-Bis (4-pentylphenylethynyl)antracene organic molecules were grown on optical glass, silicon and porous silicon substrates. First optical and luminescent properties of such hybrid composites are thoroughly studied using spectroscopic techniques. The strong decrease of aggregation in thin films of 1-pentyl-2 / ,3 / -difluoro-3 /// -methyl-4 //// -octyl- p -quinquephenyl on porous silicon was observed. The possibility of simultaneous red, green and blue tunable photon emission from organic film/porous silicon hybrid structure is demonstrated.

RadiationMaterials scienceOptical glassSiliconbusiness.industrychemistry.chemical_element02 engineering and technology010402 general chemistry021001 nanoscience & nanotechnologyPorous silicon01 natural sciences0104 chemical sciencesOrganic moleculesOrganic filmPhoton emissionchemistryOptoelectronicsThin film0210 nano-technologybusinessLuminescenceInstrumentationRadiation Measurements
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Stimulated luminescence of AlN ceramics induced by ultraviolet radiation

2001

Abstract Properties of thermally stimulated luminescence (TL) and optically stimulated luminescence (OSL) of the ceramic material AlN-Y 2 O 3 have been studied after exposure to ultraviolet radiation (UVR). The dosemeter material Al 2 O 3 : C has been used for comparative measurements. The spectral sensitivity of the samples has been studied and compared with spectral effectiveness of the UVR-induced biological processes. It has been shown that a very high yield and linear dose response characterise the UVR-induced TL from AlN-Y 2 O 3 . Although lower than the TL, the OSL signal from UV-exposed AlN-Y 2 O 3 is still higher than that of Al 2 O 3  : C in a broad spectral region. The possibilit…

RadiationMaterials scienceOptically stimulated luminescencebusiness.industryAnalytical chemistryThermoluminescenceSpectral sensitivityvisual_artYield (chemistry)visual_art.visual_art_mediumOptoelectronicsDosimetryCeramicIrradiationbusinessLuminescenceInstrumentationRadiation Measurements
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Radiation induced luminescence processes in c-BN

2004

Abstract Spectral properties of cubic boron nitride have been studied using methods of photoluminescence (PL), X-ray excited luminescence (XL), thermoluminescence (TL) and optically stimulated luminescence. It is found that emission of cubic boron nitride is presented by 4 subbands, their relative yield is determined by the excitation type: blue, green (dominant) and red bands are observed in PL, ultraviolet, blue (dominant), green and red bands—in XL. Three thermal peaks are found in TL curves in the 0–700°C temperature range, their presence and intensity depend on radiation type used. A tentative correspondence between thermal peaks and emission bands is found.

RadiationMaterials sciencePhotoluminescenceOptically stimulated luminescencebusiness.industryAnalytical chemistrychemistry.chemical_elementNitrideThermoluminescencechemistry.chemical_compoundchemistryBoron nitrideExcited stateOptoelectronicsbusinessLuminescenceBoronInstrumentationRadiation Measurements
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Transition probabilities of PrII-lines emitted from a ferroelectric plasma source

1991

Abstract An argon-praseodymium plasma was generated under atmospheric pressure between a ceramic ferroelectric plate and a praseodymium plate. The system of plates was connected to an acoustic frequency supply. The plasma radiation was analyzed in the spectral range from 2000 to 7000 A by using a grating spectrograph with a linear dispersion near 1 mm/A, adopted to photoelectric measurements. The emission spectrum of praseodymium was recorded and the intensities of a few hundred lines were measured. Transition probabilities were determined for 62PrII-lines, using available lifetime data for excited levels and measured branching ratios of the corresponding lines. Reasonable agreement has bee…

RadiationMaterials sciencePraseodymiumchemistry.chemical_elementPlasmaPhotoelectric effectFerroelectricityAtomic and Molecular Physics and OpticsMolecular electronic transitionSpectral linechemistryExcited stateEmission spectrumAtomic physicsSpectroscopyJournal of Quantitative Spectroscopy and Radiative Transfer
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