Search results for "electromagnetic"

showing 10 items of 1595 documents

Oxidation of Zn nanoparticles probed by online optical spectroscopy during nanosecond pulsed laser ablation of a Zn plate in H2O

2015

We report online UV-Visible absorption and photoluminescence measurements carried out during and after pulsed laser ablation of a zinc plate in water, which clarify the events leading to the generation of ZnO nanoparticles. A transient Zn/ZnO core-shell structure is revealed by the coexistence of the resonance absorption peak around 5.0 eV due to Zn surface plasmon resonance and the edge at 3.5 eV of ZnO. The growth kinetics of ZnO, selectively probed by the exciton luminescence at 3.3 eV, begins only after a ∼30 s delay from the onset of laser ablation. We also detect the luminescence at 2.3 eV of ZnO oxygen vacancies, yet rising with an even longer delay (∼100 s). These results show that …

PhotoluminescenceMaterials scienceLaser ablationPhysics and Astronomy (miscellaneous)chemistryAnalytical chemistryNanoparticlechemistry.chemical_elementZincSurface plasmon resonanceLuminescenceAbsorption (electromagnetic radiation)SpectroscopyApplied Physics Letters
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Level anti-crossing magnetometry with color centers in diamond

2017

Recent developments in magnetic field sensing with negatively charged nitrogen-vacancy centers (NV) in diamond employ magnetic-field (MF) dependent features in the photoluminescence (PL) and eliminate the need for microwaves (MW). Here, we study two approaches towards improving the magnetometric sensitivity using the ground-state level anti-crossing (GSLAC) feature of the NV center at a background MF of 102.4\,mT. Following the first approach, we investigate the feature parameters for precise alignment in a dilute diamond sample; the second approach extends the sensing protocol into absorption via detection of the GSLAC in the diamond transmission of a 1042\,nm laser beam. This leads to an …

PhotoluminescenceMaterials scienceMagnetometerMagnetismchemistry.chemical_elementFOS: Physical sciences02 engineering and technologyengineering.material01 natural scienceslaw.inventionNuclear magnetic resonancelaw0103 physical sciencesMesoscale and Nanoscale Physics (cond-mat.mes-hall)010306 general physicsAbsorption (electromagnetic radiation)Quantum PhysicsCondensed Matter - Mesoscale and Nanoscale Physicsbusiness.industryDiamond021001 nanoscience & nanotechnologyMeitneriumLaserchemistryengineeringOptoelectronics0210 nano-technologybusinessQuantum Physics (quant-ph)MicrowaveSlow Light, Fast Light, and Opto-Atomic Precision Metrology X
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The time-resolved luminescence characteristics of Ce and Ce/Pr doped YAG ceramics obtained by high pressure technique

2012

Abstract Transparent Ce and Ce/Pr doped YAG ceramics were prepared under high pressures (up to 8 GPa) and relative low temperature (450 °C). Grain size of the ceramics is less than 50 nm. However unknown defects or disorders strains on grain boundaries caused the additional absorption in these ceramics. The luminescence intensity, spectra and the decay time dependence on pressure applied during ceramic preparation were studied. Concentration of some intrinsic point defect was reduced under the high pressure applied for sintering process. It is shown that formation time of the excited state of Ce luminescence depends on the pressure applied during ceramic sintering.

PhotoluminescenceMaterials scienceOrganic ChemistryDopingAnalytical chemistrySinteringMineralogyAtomic and Molecular Physics and OpticsGrain sizeElectronic Optical and Magnetic MaterialsInorganic Chemistryvisual_artvisual_art.visual_art_mediumGrain boundaryCeramicElectrical and Electronic EngineeringPhysical and Theoretical ChemistryAbsorption (electromagnetic radiation)LuminescenceSpectroscopyOptical Materials
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Optical properties of ultrathin Al2O3/ZnO nanolaminates

2015

Abstract Because of their high resistance against ultraviolet and high energy particles, ultrathin amorphous nanolaminates can be very attractive for aerospace application. Here we report on the optical and structural properties of ultrathin Al2O3/ZnO nanolaminates deposited by Atomic Layer Deposition. Structural properties of nanolaminates were studied by GIXRD and AFM. Optical characterization was performed by transmittance, spectroscopic ellipsometry and photoluminescence (PL) spectroscopy. Regression analysis of ellipsometric spectra has shown that absorption peak decreases and blue shifted with the decrease of bilayer thickness in the stack. On the basis of the analysis of structural a…

PhotoluminescenceMaterials sciencebusiness.industryBilayerMetals and AlloysNanotechnologySurfaces and InterfacesSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsBlueshiftAmorphous solidAtomic layer depositionMaterials ChemistryTransmittanceOptoelectronics[CHIM]Chemical SciencesbusinessSpectroscopyAbsorption (electromagnetic radiation)ComputingMilieux_MISCELLANEOUS
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Inhomogeneous Broadening of Photoluminescence Spectra and Kinetics of Nanometer-Thick (Phenethylammonium)2PbI4 Perovskite Thin Films: Implications fo…

2021

An outstanding potentiality of layered two-dimensional (2D) organic–inorganic hybrid perovskites (2DHPs) is in the development of solar cells, photodetectors, and light-emitting diodes. In 2DHPs, an exciton is localized in an atomically thin lead(II) halide inorganic layer of sub-nanometer thickness as in a quantum well sandwiched between organic layers as energetic and dielectric barriers. In previous years, versatile optical characterization of 2DHPs has been carried out mainly for thin flakes of single crystals and ultrathin (of the order of 20 nm) polycrystalline films, whereas there is a lack of optical characterization of thick (hundreds of nanometers) polycrystalline films, fundament…

PhotoluminescenceMaterials sciencebusiness.industryKineticspolycrystalline filmSpectral lineexcitonic photoluminescenceOptoelectronicsGeneral Materials ScienceNanometreThin film2D halide perovskitebusinessAbsorption (electromagnetic radiation)absorptioninhomogeneous broadeningPerovskite (structure)ACS Applied Nano Materials
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Luminescence and absorption spectroscopy of Sn-related impurity centers in silica

2006

We report an experimental study on the absorption and luminescence spectra of oxygen deficient point defects in Sn-doped silica. The absorption band at 4.9 eV (B2β band) and the two related photoluminescence bands at ∼4.2 eV (singlet-singlet emission, S1 → S0) and at ∼3.2 eV (triplet-singlet emission, T1 → S0), linked by a thermally activated T1 → S1 inter-system crossing process (ISC), are studied as a function of temperature from 300 to 20 K. This approach allows us to investigate the dynamics properties of the matrix in the surroundings of the point defects and the effects of local disorder on the two relaxation processes from S1: the radiative channel to S0 and the ISC process to T1. We…

PhotoluminescenceOptical fiberLuminescenceAbsorption spectroscopyTime resolved measurementOptical spectroscopy71.55.JvMolecular physicsAbsorptionMaterials ChemistryAbsorption (electromagnetic radiation)SpectroscopyAerogelChemistryRelaxation (NMR)PACS: 78.55.QrSilicaAtmospheric temperature rangeCondensed Matter Physics81.20.FwElectronic Optical and Magnetic MaterialsAbsorption band63.50.+xCeramics and CompositesThermodynamicsDefectAtomic physicsLuminescence
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Synthesis and properties of new phosphorus-functionalized bithiophene materials

2003

The synthesis and reactivity of the novel dithieno[3,2-b:2',3'-d]-phosphole system and its potential use in polymeric sensory materials was investigated. Due to the nucleophilic nature of the phosphorus atom, these materials were found to be easily tunable. Classical reactions at the phosphorus center were performed to modify the electronic structure of the system and the corresponding changes were detected by UV/Vis and fluorescence spectroscopy. Depending on the oxidation state of the central phosphorus atom or its substitution pattern, the dithieno[3,2-b:2',3'-d]-phospholes show varying wavelengths for absorption and emission allowing to distinguish between different compounds by means o…

PhotoluminescencePolymers and PlasticsAbsorption spectroscopyChemistryPhosphorusOrganic ChemistryInorganic chemistrychemistry.chemical_elementCondensed Matter PhysicsPhotochemistryFluorescence spectroscopyOxidation stateMaterials ChemistryReactivity (chemistry)SpectroscopyAbsorption (electromagnetic radiation)Macromolecular Symposia
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Luminescence study of defects in synthetic as-grown and HPHT diamonds compared to natural diamonds

2005

The optically active defects in as-grown, high-pressure high-temperature-treated (HPHT), boron-doped, and synthetic diamonds (SD) grown with a nitrogen-getter, as well as of natural diamonds (ND), were characterized by absorption and luminescence spectroscopies using different excitation sources. The laser-excited photoluminescence (PL) spectra of SDs show numerous sharp lines characteristic for nickel-related centers, whereas NDs yield mainly broad PL bands. The emission from the nickel-related defects in NIR range increases and the maxima of the bands shift to lower energies with increasing temperature. Under UV and electron beam excitation, the yellow synthetic diamonds display green lum…

Photoluminescencebusiness.industryChemistryAnalytical chemistryCathodoluminescenceCorundumengineering.materialSpectral lineGeophysicsGeochemistry and PetrologyImpurityExcited stateengineeringOptoelectronicsLuminescenceAbsorption (electromagnetic radiation)businessAmerican Mineralogist
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Roadmap on STIRAP applications

2019

STIRAP (stimulated Raman adiabatic passage) is a powerful laser-based method, usually involving two photons, for efficient and selective transfer of populations between quantum states. A particularly interesting feature is the fact that the coupling between the initial and the final quantum states is via an intermediate state, even though the lifetime of the latter can be much shorter than the interaction time with the laser radiation. Nevertheless, spontaneous emission from the intermediate state is prevented by quantum interference. Maintaining the coherence between the initial and final state throughout the transfer process is crucial. STIRAP was initially developed with applications in …

PhotonAtomic Physics (physics.atom-ph)Digital storageStimulated Raman adiabatic passage02 engineering and technologyStimulated Raman adiabatic passage (STIRAP)01 natural scienceslaw.inventionPhysics - Atomic PhysicsFTIR SPECTROSCOPYstimulated Raman adiabatic passage (STIRAP)lawStereochemistryRare earthsStatistical physicsMetal ionsmolecular Rydberg statesQCparity violationPhysicseducation.field_of_studyQuantum PhysicsElectric dipole momentsCoherent population transfer021001 nanoscience & nanotechnologyCondensed Matter Physicsacoustic waves; molecular Rydberg states; nuclear coherent population transfer; parity violation; spin waves; stimulated Raman adiabatic passage (STIRAP); ultracold moleculesADIABATIC PASSAGEAtomic and Molecular Physics and OpticsChemical DynamicsMolecular beamsVIOLATING ENERGY DIFFERENCEResearch group A. Pálffy – Division C. H. KeitelStimulated emission0210 nano-technologyCoherence (physics)Experimental parametersPopulationFOS: Physical sciencesacoustic waves530spin wavesMolecular Rydberg statesELECTROMAGNETICALLY INDUCED TRANSPARENCYSINGLE PHOTONSQuantum statePhysics - Chemical Physics0103 physical sciencesUltracold moleculesSpontaneous emissionddc:530Nuclear coherent population transfer010306 general physicseducationStimulated Raman adiabatic passageChemical Physics (physics.chem-ph)Rare-earth-ion doped crystalsPhotonsQuantum opticsnuclear coherent population transferBROAD-BANDControlled manipulationsPOLAR-MOLECULESMoleculesRydberg statesLaserSuperconducting quantum circuitAcoustic wavesParity violationstimulated Raman adiabatic passage (STIRAP); ultracold molecules; parity violation; spin waves; acoustic waves; molecular Rydberg states; nuclear coherent population transferDewey Decimal Classification::500 | Naturwissenschaften::530 | Physikultracold moleculesQuantum Physics (quant-ph)QUANTUM GASSpin waves
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Accelerated stabilization of coherent photon states

2018

| openaire: EC/H2020/681311/EU//QUESS Control and utilization of coherent states of microwave photons is a ubiquitous requirement for the present and near-future implementations of solid-state quantum computers. The rate at which the photon state responds to external driving is limited by the relaxation rate of the storage resonator, which poses a trade-off between fast control and long storage time. Here, we present a control scheme that is designed to drive an unknown photon state to a desired coherent state much faster than the resonator decay rate. Our method utilizes a tunable environment which acts on an ancillary qubit coupled to the resonator. By periodically resetting the qubit and…

PhotonDephasingGeneral Physics and Astronomy02 engineering and technologycoherent statescircuit quantum electrodynamics7. Clean energy01 natural sciencesResonatorphoton statesCircuit quantum electrodynamics0103 physical scienceskvanttifysiikka010306 general physicsQuantum computerPhysicsfotonitbusiness.industryResonator mode021001 nanoscience & nanotechnologyquantum information processingtunable electromagnetic environmentsQubitOptoelectronicsCoherent statesquantum state preparationdissipative quantum systems0210 nano-technologybusinessquantum control
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