Search results for "WAVES"

showing 10 items of 1766 documents

Notes on the Electroelastic Interaction in Joint Hamiltonian and Stochastic Treatment of Polarization Response

2008

Conventional Landau theory for ferroelectric phase instability is extended by entities accounting for the violation of thermodynamic equilibrium and the impact of thermal fluctuations. The physical content concerns Ginzburg-Landau type model Hamiltonians assigned to the mean field interaction of macroscopically small and microscopically large lattice cells affected by thermal fluctuations. A special topic derived in a systematic way is long range electroelastic interaction formally given by selfconsistent solution of the polarization and strain fields. Test solution for inhomogeneous strain in a slab is presented within the framework of lattice cell picture.

PhysicsThermodynamic equilibriumThermal fluctuationsCondensed Matter PhysicsPolarization (waves)Landau theoryElectronic Optical and Magnetic Materialssymbols.namesakeClassical mechanicsMean field theoryQuantum mechanicsLattice (order)symbolsGinzburg–Landau theoryHamiltonian (quantum mechanics)Ferroelectrics
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Transmission of electrons through ferromagnetic material and applications to detection of electron spin polarization

1993

The salient features of the total low energy inelastic electron scattering cross section in transition metals are described by a constant term σ 0 plus a term σ d that is proportional to the number of unoccupied d-orbitals. This simple model predicts that low energy electrons transmitted through a ferromagnetic ultrathin film acquire a transport spin polarization a(x). Using the ratio σ 0 /σ d as the only adjustable parameter, the model predicts the enhancement of the spin polarization of the low energy cascade electrons as well as a(x) in reasonable agreement with the existing observations on Fe, Co and Ni. A detector for electron spin polarization P based on the spin dependent transmissio…

PhysicsCondensed matter physicsTransition metalSpin polarizationFerromagnetismScatteringGeneral Physics and AstronomyCondensed Matter::Strongly Correlated ElectronsElectronAtomic physicsInelastic scatteringPolarization (waves)Spin (physics)Annalen der Physik
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Phase-noise Impact on the Performance of mmWave-radars

2019

The impact of phase noise in Frequency Modulated Continuous Wave (FMCW) millimeter-wave (mmWave) radars is investigated in this paper. A FMCW signal is transmitted from the radar, reflected off a moving object and processed at a receiver in the radar. The impact of random phase noise/jitter on the performance parameters of estimated distance, speed and angle of arrival of an object is studied. Our studies show that there exists a threshold at about fifteen percent of the period of the carrier frequency, over which errors substantially manifest in the estimations. Distance estimation is less affected than speed and angle, which rely directly on the phase information for the estimations. Angl…

020301 aerospace & aeronauticsComputer scienceAcousticsPhase (waves)020206 networking & telecommunications02 engineering and technologySignallaw.inventionNoise0203 mechanical engineeringlawAngle of arrivalPhase noise0202 electrical engineering electronic engineering information engineeringContinuous waveRadarJitter2019 IEEE International Conference on Advanced Networks and Telecommunications Systems (ANTS)
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Production cross-sections and neutron polarization in (p,n) reactions at 143 MeV

1963

Abstract Measurements have been made of the energy spectra and polarizations of neutrons emitted at a laboratory angle of 45° from deuterium, lithium and aluminium bombarded by protons of 143 MeV. The results are consistent with the view that neutron production from deuterium proceeds mainly by single quasi-free proton-neutron scattering but that multiple scattering effects predominate in heavier nuclei.

PhysicsNuclear and High Energy PhysicsScatteringAstrophysics::High Energy Astrophysical PhenomenaNuclear Theorychemistry.chemical_elementPolarization (waves)Spectral lineNuclear physicsDeuteriumNeutron generatorchemistryAluminiumPhysics::Accelerator PhysicsNeutronAtomic physicsNuclear ExperimentNuclear Physics
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Generalized formulation and symmetry properties of reciprocal nonabsorbing polarization devices: Application to liquid-crystal displays

2000

We present a general formulation based on the Jones-matrix theory for reciprocal nonabsorbing polarization devices, including polarization interference filters and liquid-crystal displays. The development of this formulation is based on general symmetry conditions that relate the Jones matrix when the device is illuminated from the front side and from the back side. The application to liquid-crystal displays results in a constraint of the Jones-matrix elements, which represents a generalization of the existing models that explain their modulation properties.

PhysicsLiquid crystal devicesLiquid-crystal displayPolarization rotatorBirefringencebusiness.industryPolarization (waves)Atomic and Molecular Physics and OpticsElectronic Optical and Magnetic Materialslaw.inventionOpticslawComputer Vision and Pattern RecognitionCrystal opticsbusinessReciprocal
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Polarization observables in deuteron photodisintegration below 360 MeV

2010

High precision measurements of induced and transferred recoil proton polarization in d(polarized gamma, polarized p})n have been performed for photon energies of 277--357 MeV and theta_cm = 20 degrees -- 120 degrees. The measurements were motivated by a longstanding discrepancy between meson-baryon model calculations and data at higher energies. At the low energies of this experiment, theory continues to fail to reproduce the data, indicating that either something is missing in the calculations and/or there is a problem with the accuracy of the nucleon-nucleon potential being used.

PhysicsNuclear and High Energy PhysicsPhotonMeson010308 nuclear & particles physicsNuclear TheoryPolarization observablesFOS: Physical sciencesPolarization (waves)01 natural sciencesRecoil protonNuclear physicsBaryonDeuteriumPhotodisintegration0103 physical sciencesNuclear Experiment (nucl-ex)Atomic physicsNuclear Experiment010306 general physicsNuclear ExperimentPhysics Letters B
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Generation of vector dark-soliton trains by induced modulational instability in a highly birefringent fiber

1999

International audience; We present a set of experimental observations that demonstrate the generation of vector trains of dark-soliton pulses in the orthogonal axes of a highly birefringent optical fiber. We generated dark-soliton trains with terahertz repetition rate in the normal group-velocity dispersion regime by inducing a polarization modulational instability by mixing two intense, orthogonal continuous laser beams. Numerical solutions of the propagation equations were used to optimize the emission of vector dark pulses at the fiber output.

PhysicsOptical fiberBirefringence[SPI.OPTI] Engineering Sciences [physics]/Optics / Photonicbusiness.industryTerahertz radiationOptical communicationPhysics::OpticsStatistical and Nonlinear PhysicsPolarization (waves)01 natural sciencesAtomic and Molecular Physics and Opticslaw.invention010309 opticsModulational instabilityOpticsOrthogonal coordinateslaw0103 physical sciences[SPI.OPTI]Engineering Sciences [physics]/Optics / Photonic[ SPI.OPTI ] Engineering Sciences [physics]/Optics / Photonic010306 general physicsbusinessLaser beams
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Osteogenic commitment and differentiation of human mesenchymal stem cells by low‐intensity pulsed ultrasound stimulation

2018

Low-intensity pulsed ultrasound (LIPUS) as an adjuvant therapy in in vitro and in vivo bone engineering has proven to be extremely useful. The present study aimed at investigating the effect of 30 mW/cm(2) LIPUS stimulation on commercially available human mesenchymal stem cells (hMSCs) cultured in basal or osteogenic medium at different experimental time points (7d, 14d, 21d). The hypothesis was that LIPUS would improve the osteogenic differentiation of hMSC and guarantying the maintenance of osteogenic committed fraction, as demonstrated by cell vitality and proteomic analysis. LIPUS stimulation (a) regulated the balance between osteoblast commitment and differentiation by specific network…

Proteomics0301 basic medicineTime FactorsUltrasonic WaveTranscription FactorPhysiologyCellular differentiationClinical BiochemistryLow-intensity pulsed ultrasoundOsteogenesisProtein Interaction MapsStem Cell Nichemesenchymal stem cellCells CulturedProtein metabolic processproteomic analysiMesenchymal Stromal CellReverse Transcriptase Polymerase Chain ReactionOsteogenesiIntracellular Signaling Peptides and ProteinsCell DifferentiationOsteoblastproteomic analysisFlow CytometryCell biologyRUNX2Phenotypemedicine.anatomical_structureUltrasonic Wavesosteoblast differentiationosteogenic commitmentProtein Interaction MapHumanSignal TransductionHomeobox protein NANOGlow-intensity pulsed ultrasoundTime FactorCell SurvivalEnzyme-Linked Immunosorbent AssayBiology03 medical and health sciencesSOX2medicineHumansCell LineageMesenchymal stem cellProteomicMesenchymal Stem CellsCell Biology030104 developmental biologyGene Expression RegulationIntracellular Signaling Peptides and ProteinImmunologyTranscription FactorsJournal of Cellular Physiology
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Model of scanning force microscopy on ionic surfaces.

1995

We present a theoretical model of the scanning force microscope using an atomistic simulation technique for the interaction between a crystalline sample and a tip nanoasperity combined with a semi- empirical treatment of the mesoscopic van der Waals attraction between tip and surface, and the macroscopic parameter of cantilever deflection. For the nanoasperity at the end of the tip, we used a neutral and a protonated (MgO${)}_{32}$ cube, which model a hard tip made of oxide material. Static calculations based on total-energy minimization were used to determine the surface and tip geometries and total energy as a function of tip position. Scan lines of the perfect (001) surfaces of NaCl and …

Mesoscopic physicsMaterials scienceIonic bondingNanotechnologyEdge (geometry)Molecular physicsIonCondensed Matter::Materials ScienceMonatomic ionsymbols.namesakeChemical force microscopysymbolsvan der Waals forceDispersion (water waves)Physical review. B, Condensed matter
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An evaluation of exposure metrics in an epidemiologic study on radio and television broadcast transmitters and the risk of childhood leukemia.

2009

Electric field strength values calculated by wave propagation modeling were applied as an exposure metric in a case–control study conducted in Germany to investigate a possible association between radio frequency electromagnetic fields (RF-EMF) emitted from television and radio broadcast transmitters and the risk of childhood leukemia. To validate this approach it was examined at 850 measurement sites whether calculated RF-EMF are an improvement to an exposure proxy based on distance from the place of residence to a transmitter. Further, the agreement between measured and calculated RF-EMF was explored. For dichotomization at the 90% quantiles of the exposure distributions it was found that…

PhysiologyRadio WavesBiophysicsSensitivity and SpecificityStatistical powerRadio spectrumCohen's kappaElectromagnetic FieldsGermanyStatisticsHumansRadiology Nuclear Medicine and imagingChildMathematicsLeukemiabusiness.industryTransmitterGeneral MedicineEnvironmental ExposureAmplitudeCase-Control StudiesTelevisionRadio frequencybusinessRadio broadcastingRadio waveBioelectromagnetics
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