Search results for "Phenomenological model"

showing 10 items of 68 documents

Non-isothermal mass transfer of ferrocolloids through porous membrane

2011

Abstract The present paper deals with transport properties of ferrofluid nanoparticles in non-isothermal capillary-porous layer. Experiment establishes that the temperature difference, which is applied across the layer, induces a thermoosmotic pressure gradient directed toward increasing temperature. The measurement results are interpreted in a frame of phenomenology of linear irreversible thermodynamics. The transport coefficients are evaluated comparing the measured separation curves with approximate solution of the corresponding mass transfer problem.

FerrofluidMaterials scienceDiffusionMass transferPhenomenological modelThermodynamicsMagnetic nanoparticlesCondensed Matter PhysicsThermophoresisPressure gradientIsothermal processElectronic Optical and Magnetic MaterialsJournal of Magnetism and Magnetic Materials
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Colloquium: The Shape of Hadrons

2012

This Colloquium addresses the issue of the shape of hadrons and, in particular, that of the proton. The concept of shape in the microcosm is critically examined. Special attention is devoted to properly define the meaning of shape for bound-state systems of near massless quarks. The ideas that lead to the expectation of nonsphericity in the shape of hadrons, the calculations that predict it, and the experimental information obtained from recent high-precision measurements are examined. Particular emphasis is given to the study of the electromagnetic transition between the nucleon and its first excited state, the Δ(1232) resonance. The experimental evidence is critically examined and compare…

First excited stateQuarkQuantum chromodynamicsPhysicsParticle physicsPhenomenological modelsPhysicsEffective field theoryHadronBound stateGeneral Physics and AstronomyHadronsExperimental evidenceMassless particleBaryonElectromagnetic transitionsHigh-precision measurementNonsphericityLattice calculationsEffective field theoryBibliographyNucleonReviews of Modern Physics
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Evidence for Interfacial-Storage Anomaly in Nanocomposites for Lithium Batteries from First-Principles Simulations

2006

We present theoretical support for a mass storage anomaly proposed for nanocomposites in the context of lithium batteries which forms the transition between an electrostatic capacitive mechanism and an electrode mechanism. Ab initio atomic and electronic structure calculations, performed on the Ti(0001)/Li2O(111) model interface, indicate the validity of the phenomenological model of interfacial Li storage and provide a deeper insight into the local situation. Beyond the specific applicability to storage devices, the possibility of a two-phase effect on mass storage generally highlights the availability of novel degrees of freedom in materials research when dealing with nanocomposites.

Materials scienceCapacitive sensingAb initioGeneral Physics and Astronomychemistry.chemical_elementContext (language use)NanotechnologyElectronic structureMass storagechemistryChemical physicsPhenomenological modelLithiumAnomaly (physics)Physical Review Letters
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The depolarization field effect on the thin ferroelectric films properties

2002

Abstract The calculation of the spontaneous polarization (Ps), dielectric susceptibility (χ) and pyroelectric coefficient (Π) of the ferroelectric films has been performed in the phenomenological theory framework. Euler–Lagrange equation was solved analytically under the boundary conditions with different extrapolation lengths at two surfaces, respectively. The depolarization field contribution was taken into account in the model of short-circuited mono domain ferroelectric film, treated as perfect insulator. The detailed analysis of the aforementioned quantities’ space distribution and their average values in two cases with and without depolarization field was carried out. It was shown tha…

Materials scienceCondensed matter physicsCritical phenomenaPhenomenological modelExtrapolationField effectDepolarizationDielectricElectrical and Electronic EngineeringCondensed Matter PhysicsCritical fieldFerroelectricityElectronic Optical and Magnetic MaterialsPhysica B: Condensed Matter
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Properties of Thin Ferroelectric Film with Different Electrodes

2008

The influence of different metallic and semiconducting electrodes on the properties of thin ferroelectric films is considered within the framework of the phenomenological Ginzburg-Landau theory. Allowing for the effect of charge screening in metals and semiconductors, the contribution of electric field produced by charges in the electrodes is included into the functional of free energy and, hence, to the Euler-Lagrange equation for film polarization. Application of variational method to this equation solution permitted the transformation of the free energy functional into a conventional type free energy with a renormalized coefficient before P 2 , the coefficient being dependent on the both…

Materials scienceCondensed matter physicsbusiness.industryCondensed Matter PhysicsFerroelectricityElectronic Optical and Magnetic MaterialsCondensed Matter::Materials ScienceVariational methodSemiconductorElectric fieldPhenomenological modelGinzburg–Landau theoryThin filmbusinessEnergy functionalFerroelectrics
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<title>Structure-relaxation-induced peculiarities of the holographic recording in amorphous As<formula><inf><roman>2</roma…

1997

The results of the experimental study of holographic recording in a-As2S3 films are reported such as exposure and intensity dependencies, spatial frequency dependence. Several peculiarities are found including recording intensity threshold, nonmonotonical intensity dependencies, nonlinear exposure curves, the change of the spatial frequency response due to films aging. These peculiarities are explained in terms of phenomenological model which is based on the simultaneous action of the photostructural changes and the relaxational structural changes.© (1997) COPYRIGHT SPIE--The International Society for Optical Engineering. Downloading of the abstract is permitted for personal use only.

Materials scienceCondensed matter physicsbusiness.industryOptical engineeringRelaxation (NMR)HolographyAmorphous solidlaw.inventionOpticslawPhenomenological modelSpatial frequencyOptical resolutionbusinessIntensity (heat transfer)SPIE Proceedings
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Depolarization Field in Thin Ferroelectric Films With Account of Semiconductor Electrodes

2005

Within the framework of the phenomenological Ginzburg-Landau theory influence of semiconductor electrodes on the properties of thin ferroelectric films is considered. The contribution of the semiconductor electrodes with different Debye screening length of carriers is included in the functional of free energy. The influence of highly doped semiconductor electrodes on the depolarization field and the film properties was shown to be great.

Materials scienceField (physics)Condensed matter physicsDopingDepolarizationCondensed Matter::Mesoscopic Systems and Quantum Hall EffectCondensed Matter PhysicsFerroelectricityElectronic Optical and Magnetic MaterialsCondensed Matter::Materials Sciencesymbols.namesakePhysics::Plasma PhysicsCondensed Matter::SuperconductivityPhenomenological modelsymbolsGinzburg–Landau theoryThin filmDebye lengthFerroelectrics
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Far infrared absorption by acoustic phonons in titanium dioxide nanopowders

2006

We report spectral features of far infrared electromagnetic radiation absorption in anatase TiO2 nanopowders which we attribute to absorption by acoustic phonon modes of nanoparticles. The frequency of peak excess absorption above the background level corresponds to the predicted frequency of the dipolar acoustic phonon from continuum elastic theory. The intensity of the absorption cannot be accounted for in a continuum elastic dielectric description of the nanoparticle material. Quantum mechanical scale dependent effects must be considered. The absorption cross section is estimated from a simple mechanical phenomenological model. The results are in plausible agreement with the absorption b…

Materials sciencePhononContinuum (design consultancy)FOS: Physical sciences02 engineering and technologyDielectric01 natural sciences7. Clean energyMolecular physicsElectromagnetic radiationCondensed Matter::Materials ScienceFar infrared0103 physical sciencesPhenomenological modelElectrical and Electronic Engineeringacoustic phonon010306 general physicsAbsorption (electromagnetic radiation)Condensed Matter - Materials Sciencetitanium dioxidenanoparticleAbsorption cross sectionMaterials Science (cond-mat.mtrl-sci)[ PHYS.COND.CM-GEN ] Physics [physics]/Condensed Matter [cond-mat]/Other [cond-mat.other]021001 nanoscience & nanotechnology3. Good healthElectronic Optical and Magnetic Materialsinfrared absorption0210 nano-technology
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Prediction of the growth interface shape in industrial 300mm CZ Si crystal growth

2004

Abstract A model approach for a modification of the effective heat conductivity in the turbulent melt flow simulation for 28″ Si CZ crucibles is presented, which helped to overcome deficiencies in the growth interface shape prediction for industrial 300 mm Si CZ growth. The model has been incorporated into a CZ simulation tool based on the simulation software codes FEMAG for the global heat transfer and CFD-ACE for the turbulent melt flow simulation. The model predictions are compared to results from 300 mm Si CZ growth experiments with 200 kg charge weight in 28″ crucibles in a growth parameter range covered by standard industrial processes. The model is an engineering approach. Neverthele…

Materials scienceTurbulenceMineralogyThermodynamicsCrystal growthCondensed Matter Physicscomputer.software_genreThermal conductionSimulation softwareInorganic ChemistryThermal conductivityHeat transferPhenomenological modelMaterials ChemistrycomputerMelt flow indexJournal of Crystal Growth
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Investigation and modeling of the anomalous yield point phenomenon in pure tantalum

2014

International audience; The monotonic and cyclic behavior of commercially pure tantalum has been investigated at room temperature, in order to capture and understand the occurrence of the anomalous yield point phenomenon. Interrupted tests have been performed, with strain reversals (tensile or compressive loading) after an aging period. The stress drop is attributed to the interactions between dislocations and solute atoms (oxygen) and its macroscopic occurrence is not systematically observed. InfraRed Thermography (IRT) measurements supported by Scanning Electron Microscopy (SEM) pictures of the polished gauge length of a specimen during an interrupted tensile test reveal the nucleation an…

Materials science[ SPI.MAT ] Engineering Sciences [physics]/MaterialsNucleationTantalumchemistry.chemical_elementBand propagation02 engineering and technologyTantalum01 natural sciences[SPI.MAT]Engineering Sciences [physics]/MaterialsViscosity0103 physical sciencesPhenomenological modelUltimate tensile strengthForensic engineeringGeneral Materials ScienceComposite materialTensile testing010302 applied physicsStrain (chemistry)Mechanical Engineering021001 nanoscience & nanotechnologyCondensed Matter PhysicschemistryMechanics of MaterialsStatic strain agingInfrared thermography0210 nano-technologyStrain localizationDynamic strain aging
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