Search results for "BAND"

showing 10 items of 2610 documents

Optimal control of the inversion of two spins in Nuclear Magnetic Resonance

2012

International audience; We investigate the optimal control of the inversion of two spin 1/2 particles in Nuclear Magnetic Resonance. The two spins, which differ by their resonance offset, are controlled by the same radio frequency magnetic field. Using the Pontryagin Maximum Principle, we compute the optimal control sequence which allows to reach the target state in a given time, while minimizing the energy of the magnetic field. A comparison with the time-optimal solution for bounded control amplitude realizing the same control in the same time is made. An experimental illustration is done using techniques of Nuclear Magnetic Resonance.

Larmor precessionPhysics010304 chemical physicsSpinsPulsed EPRGeneral Physics and AstronomyBROAD-BAND EXCITATIONOptimal control01 natural sciencesNMRMagnetic fieldPULSESFree induction decayNuclear magnetic resonance2-LEVEL QUANTUM-SYSTEMSBloch equationsOPTIMAL-CONTROL DESIGN0103 physical sciencesRadio frequencyPhysical and Theoretical Chemistry010306 general physicsPOPULATION
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Resistive switching behaviour in ZnO and VO 2 memristors grown by pulsed laser deposition

2014

The resistive switching behaviour observed in microscale memristors based on laser ablated ZnO and VO 2 is reported. A comparison between the two materials is reported against an active device size. The results show that devices up to 300 × 300 μm 2 exhibit a memristive behaviour regardless of the device size, and 100 × 100 μm 2 ZnO-based memristors have the best resistance off/on ratio.

Laser ablationMaterials sciencebusiness.industryWide-bandgap semiconductorMemristorLaserSettore ING-INF/01 - ElettronicaActive devicesPulsed laser depositionlaw.inventionMemristors Non volatile memory ZnO VO2 PLDlawResistive switchingElectronic engineeringOptoelectronicsElectrical and Electronic EngineeringbusinessMicroscale chemistryElectronics Letters
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Opale: Photonische Kristalle

2007

Opale sind selbstorganisierte, kubisch dichtest gepackte Kolloidkristalle mit Kolloid-Durchmessern im Nanometer- und Submikrometerbereich. Aufgrund der periodisch modulierten Dielektrizitatskonstante bilden sich photonische Bandlucken aus, so dass die Ausbreitung von Licht mit Wellenlangen in der Grosenordnung der Gitterkonstanten unterdruckt wird. Dies erklart u.a. den brillianten Farbeindruck. Opale konnen synthetisch aus Polymer- oder Metalloxidkolloiden in einem Bottom-up-Prozess hergestellt und auf vielfaltige Weise chemisch funktionalisiert, strukturiert oder als Template fur ihre invertierten Strukturen verwendet werden. Anwendungsgebiete reichen von optischen Chips, Farbdisplays und…

Lattice constantDielectric structureBand gapbusiness.industryChemistryChemical functionalizationPolymer chemistryOptoelectronicsGeneral ChemistryColloidal crystalbusinessChemie in unserer Zeit
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DFT study of a singleF center in cubic SrTiO3 perovskite

2006

Various properties of a cubic phase of SrTiO3 perovskite containing single F centers (neutral oxygen vacancies), including energies of their formation and migration, were simulated using different formalisms of density functional theory (DFT) as implemented into CRYSTAL-2003 and VASP computer codes. The lattice relaxation around the F center was found to be sensitive to both shape and size of supercells used. The larger the supercell, the closer the defect energy level in the bandgap lies to the conduction band bottom. It approaches the optical ionization energy of 0.49 eV for 270- and 320-atom supercells, where the distance between neighboring defects increases up to four lattice constants…

Lattice constantF-CenterCondensed matter physicsBand gapChemistryLattice (order)Density functional theorySupercellPhysical and Theoretical ChemistryIonization energyCondensed Matter PhysicsConduction bandAtomic and Molecular Physics and OpticsInternational Journal of Quantum Chemistry
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Synthesis, crystal structure, optical, thermal and magnetic studies of a new organic-inorganic hybrid based on tetrachloroferrate (III)

2021

Abstract A new organic metal halide hybrid, benzyltrimethylammonium tetrachloroferrate (III), 1, ((BzMe3N)FeCl4) was synthesized by slow evaporation. The single crystal X-ray diffraction reveals that 1, crystallizes in the P-1 triclinic space group with the parameters a ​= ​7.158 (5), b ​= ​8.814 (8), c ​= ​12.922 (4) A, α ​= ​82.44 (5), β ​= ​86.14 (4), γ ​= ​87.13 (7)°, V ​= ​805.7 (10) A3 and Z ​= ​2. The structure packing exhibits a cationic and anionic layers alternation linked by means of C─H⋯Cl hydrogen interactions. The Hirshfeld surface and the lattice energy of 1 were calculated. The material purity was verified using X-ray powder diffraction and Rietveld refinements. The TG-DTA a…

Lattice energyMaterials scienceBand gapCrystal structureTriclinic crystal systemCondensed Matter PhysicsElectronic Optical and Magnetic MaterialsInorganic ChemistryCrystallographyX-ray crystallographyMaterials ChemistryCeramics and CompositesPhysical and Theoretical ChemistryHOMO/LUMOSingle crystalPowder diffractionJournal of Solid State Chemistry
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Time-variations of zeroth-order vegetation absorption and scattering at L-band

2021

Abstract Surface soil moisture and vegetation optical depth (VOD), as an indicator of vegetation wet biomass, from passive microwave remote sensing have been increasingly applied in global ecology and climate research. Both soil moisture and VOD are retrieved from satellite brightness temperature measurements assuming a zeroth order radiative transfer model, commonly known as the tau-omega model. In this model the emission of a vegetated surface is dependent on soil moisture, vegetation absorption and vegetation scattering. Vegetation scattering is normally represented by the single scattering albedo, ω, and is commonly assumed to be a time-invariant calibration parameter to achieve high ac…

LidarScatteringSingle-scattering albedoAttenuationeffective scattering albedoSoil ScienceGeologySoil scienceContext (language use)SMAPradiometryVegetationvegetation optical depthICESat-2L-bandAtmospheric radiative transfer codesBrightness temperaturerelative canopy scatteringEnvironmental scienceComputers in Earth SciencesAbsorption (electromagnetic radiation)relative canopy absorptionRemote sensingRemote Sensing of Environment
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Excited-state lifetimes of [Fe (bipy)3]2+ and [Fe(phen)3]2+

1990

Abstract In the low-spin [Fe(bipy)3]2+ (bipy = 2,2′,bipyridine) and [Fe(phen)3]2+ (phen = 1,10-phenanthroline) complexes an excited high-spin 5T2 ligand field state can be populated by irradiating into the 1MLCT absorption band at 530 nm. The lifetimes of this excited state at low temperatures are reported for [Fe(bipy)3]2+ doped into [Zn(bipy)3] (PF6)2 and [Zn(bipy)3] (BF4)2 and for [Fe(phen)3]2+ and [Fe(bipy)3]2+ embedded in the ion exchange polymer Nafion. For [Fe(bipy)3]2+ in [Zn(bipy)3](PF6)2 the observed lifetimes decrease from 1600 ns at 10 K to 14 ns at 125 K.

Ligand field theorychemistry.chemical_classificationIon exchangeStereochemistryDopingGeneral Physics and AstronomyCrystallographyBipyridinechemistry.chemical_compoundchemistryAbsorption bandExcited stateNafionPhysical and Theoretical ChemistryInorganic compoundChemical Physics Letters
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Robust, Highly Luminescent Au13 Superatoms Protected by N-Heterocyclic Carbenes

2019

Gold superatom nanoclusters stabilized entirely by N-heterocyclic carbenes (NHCs) and halides are reported. The reduction of well-defined NHC–Au–Cl complexes produces clusters comprised of an icosahedral Au13 core surrounded by a symmetrical arrangement of nine NHCs and three chlorides. X-ray crystallography shows that the clusters are characterized by multiple CH−π and π–π interactions, which rigidify the ligand and likely contribute to the exceptionally high photoluminescent quantum yields observed, up to 16.0%, which is significantly greater than that of the most luminescent ligand-protected Au13 superatom cluster. Density functional theory analysis suggests that clusters are 8-electron …

LigandChemistryBand gapIcosahedral symmetrySuperatomGeneral Chemistry010402 general chemistry01 natural sciencesBiochemistryCatalysis0104 chemical sciencesNanoclusterschemistry.chemical_compoundCrystallographyColloid and Surface ChemistryCluster (physics)Density functional theoryPhosphineJournal of the American Chemical Society
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2-D mapping of skin chromophores in the spectral range 500 - 700 nm

2009

The multi-spectral imaging technique has been used for distant mapping of in-vivo skin chromophores by analyzing spectral data at each reflected image pixel and constructing 2-D maps of the relative concentrations of oxy-/deoxy-haemoglobin and melanin. Instead of using a broad visible-NIR spectral range, this study focuses on narrowed spectral band 500–700 nm, speeding-up the signal processing procedure. Regression analysis confirmed that superposition of three Gaussians is optimal analytic approximation for the oxy-haemoglobin absorption tabular spectrum in this spectral band, while superposition of two Gaussians fits well for deoxy-haemoglobin absorption and exponential function – for mel…

LightUltraviolet RaysGeneral Physics and AstronomySkin Pigmentationmedicine.disease_causeGeneral Biochemistry Genetics and Molecular BiologyFingersHemoglobinsSuperposition principleOpticsmedicineHumansGeneral Materials ScienceLeast-Squares AnalysisAbsorption (electromagnetic radiation)SkinMelaninsSignal processingPixelbusiness.industryChemistryGeneral EngineeringGeneral ChemistrySpectral bandsChromophoreExponential functionOxyhemoglobinsbusinessUltravioletJournal of Biophotonics
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Bio serves nano: biological light-harvesting complex as energy donor for semiconductor quantum dots.

2012

Light-harvesting complex (LHCII) of the photosynthetic apparatus in plants is attached to type-II core-shell CdTe/CdSe/ZnS nanocrystals (quantum dots, QD) exhibiting an absorption band at 710 nm and carrying a dihydrolipoic acid coating for water solubility. LHCII stays functional upon binding to the QD surface and enhances the light utilization of the QDs significantly, similar to its light-harvesting function in photosynthesis. Electronic excitation energy transfer of about 50% efficiency is shown by donor (LHCII) fluorescence quenching as well as sensitized acceptor (QD) emission and corroborated by time-resolved fluorescence measurements. The energy transfer efficiency is commensurable …

Light-Harvesting Protein ComplexesSulfidesPhotochemistryAbsorptionLight-harvesting complexQuantum DotsElectrochemistryCadmium CompoundsGeneral Materials ScienceAbsorption (electromagnetic radiation)Selenium CompoundsSpectroscopyFluorescent Dyesbusiness.industryChemistryPeasSurfaces and InterfacesCondensed Matter PhysicsFluorescenceAcceptorNanocrystalEnergy TransferSemiconductorsAbsorption bandQuantum dotZinc CompoundsOptoelectronicsTelluriumbusinessVisible spectrumLangmuir : the ACS journal of surfaces and colloids
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