Search results for "Optica"

showing 10 items of 7696 documents

Reptation and constraint release

1991

Abstract The reptation and constraint release models are discussed by considering three recent experimental examples: (1) the diffusion of hydrogenated polybutadiene in matrices of molecular weights raning between 1 ⩽ Mw / Me ⩽ 253; (2) the diffusion of polystyrene (PS) chains in matrices of star branched PS; (3) the diffusion of very long PS chains in chemically cross-linked PS-networks. It is concluded that the reptation and constraint release models are applicable, but ‘constraint release’ should be understood in a wider sense allowing for non-reptative removal of barriers to lateral chain motion. The analysis of the third example proves that lateral modes of motion have a negligible inf…

Condensed Matter PhysicsElectronic Optical and Magnetic MaterialsConstraint (information theory)chemistry.chemical_compoundReptationPolybutadienechemistryChain (algebraic topology)Chemical physicsPolymer chemistryMaterials ChemistryCeramics and CompositesPolystyreneDiffusion (business)Journal of Non-Crystalline Solids
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Heusler Compounds—A Material Class With Exceptional Properties

2011

The class of Heusler compounds, including the XYZ and the X2YZ compounds, has not only an endless number of members, but also a vast variety of properties can be found in this class of materials, ranging from semiconductors, half-metallic ferromagnets, superconductors, and topological insulators to shape memory alloys. With this review article, we would like to provide an overview of Heusler compounds, focusing on their structure, properties, and potential applications.

Condensed Matter::Materials ScienceClass (set theory)Materials scienceFerromagnetismSpintronicsCondensed matter physicsTopological insulatorSemiconductor materialsCondensed Matter::Strongly Correlated ElectronsMagnetic semiconductorElectrical and Electronic EngineeringElectronic Optical and Magnetic MaterialsIEEE Transactions on Magnetics
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Lattice Dynamics in Wurtzite Semiconductors: The Bond Charge Model of CdS

1999

An extension of the adiabatic bond charge model of Rustagi and Weber is used to study the lattice dynamic properties of wurtzite-type compounds. The model has been applied to the description of the phonon dispersion of CdS, which has been recently measured by neutron scattering. The agreement with the neutron data is excellent with a small set of physically meaningful parameters. The eigenvector admixture of the E2 modes, calculated at the G-point, agrees with the experimental values obtained through the isotopic mass dependence of the optical modes and ab initio calculations.

Condensed Matter::Materials ScienceCondensed matter physicsChemistryAb initio quantum chemistry methodsPhononLattice (order)NeutronNeutron scatteringCondensed Matter PhysicsAdiabatic processLattice model (physics)Electronic Optical and Magnetic MaterialsWurtzite crystal structurephysica status solidi (b)
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Drift Modeling of Electrically Controlled Nanoscale Metal–Oxide Gas Sensors

2008

Gas sensors with small dimensions offer the advantage of electrical sensitivity modulation. However, their actual use is hindered by drift effects that exceed those of usual metal-oxide sensors. We analyzed possible causes and found the best agreement of experimental data with the model of internal dopant fluctuations. The dopants are oxygen vacancies exhibiting high drift-diffusion coefficients under the impact of electrical fields. Thus, the width parameters of space charge regions, which again control the sensor current, are undergoing slow changes. Moreover, the dopant distributions cause internal electrical fields that yield drift even after voltage switch-off. This behavior has been p…

Condensed Matter::Materials ScienceDopantCondensed matter physicsChemistryElectric fieldField effectGas detectorSemiconductor deviceElectrical and Electronic EngineeringPoisson's equationSpace chargeElectronic Optical and Magnetic MaterialsVoltageIEEE Electron Device Letters
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AC Switching of Relaxor PLZT Ceramics

2005

The switching under application of bipolar ac field is studied by recording of the hysteresis loops in wide temperature and field range in PLZT x/65/35 ceramics. The qualitative difference of the shape of hysteresis loops above and below the freezing temperature is attributed to backswitching in relaxor phase due to the depolarization field produced by the bound charges located at the interphase boundaries. The application of the quasistatic approach to analysis of the experimental data allows us to obtain parameters of the distribution function of local coercive fields from the field dependence of the switching charge derivative on field.

Condensed Matter::Materials ScienceHysteresisDistribution functionMaterials scienceCondensed matter physicsField dependenceCommutationCoercivityCondensed Matter PhysicsPolarization (waves)Local fieldQuasistatic processElectronic Optical and Magnetic MaterialsFerroelectrics
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Surface hysteresis curves of Fe(110) and Fe(100) crystals in ultrahigh vacuum — evidence of adsorbate influences

1992

Abstract We have investigated hysteresis curves of silicon-stabilized Fe(100) and Fe(110) crystals using Polarized Secondary Electron Emission (PSEE) for surface magnetization processes and Magneto-Optical Kerr Effect (MOKE) for bulk hysteresis curves. In particular, the influence of adsorbates (oxygen and sulphur) and surface roughness on the magnetization reversal has been studied. For surface hysteresis curves we found adsorbate-induced reductions of coercive force of up to 50%; the bulk hysteresis curves showed significantly smaller deviations. Similar changes were caused by surface disorder on an atomic scale induced by ion bombardment. The results agree qualitatively with a previous e…

Condensed Matter::Materials ScienceHysteresisMagnetizationKerr effectMaterials scienceCondensed matter physicsSecondary emissionSurface roughnessSurface finishCoercivityCondensed Matter PhysicsMagnetic hysteresisElectronic Optical and Magnetic MaterialsJournal of Magnetism and Magnetic Materials
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Microscopic origin of magnetic anisotropy in martensitic Ni2MnGa

2011

The microscopic origin of magnetic anisotropy in the shape memory alloy Ni${}_{2}$MnGa is investigated by means of x-ray magnetic circular dichroism in transmission mode. Field- and angle-dependent dichroism spectra of epitaxial Ni${}_{2}$MnGa(101)/MgO(001) films reveal pronounced differences for magnetization aligned parallel and perpendicular to the film plane. These differences are related to an anisotropy of the orbital magnetic moment in agreement with the observed out-of-plane magnetocrystalline anisotropy. The spectral variation of the x-ray absorption originates from changes in the spin-projected density of states when the magnetization vector is rotated from the easy to the hard ma…

Condensed Matter::Materials ScienceMagnetic anisotropyMagnetizationParamagnetismMaterials scienceCondensed matter physicsX-ray magnetic circular dichroismMagnetic momentAbsorption (logic)Condensed Matter PhysicsMagnetocrystalline anisotropyMagnetic susceptibilityElectronic Optical and Magnetic MaterialsPhysical Review B
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Magnetization states in ultrathin films with laterally modulated anisotropies

1998

Abstract Micromagnetic theory has been applied to a model system for ultrathin films with laterally modulated anisotropies, consisting of a periodic array of stripes with alternating uniaxial anisotropies. Despite of the discontinuous change of anisotropy, the magnetization direction only changes on a lateral scale given by the exchange length. If the width of one of the two alternating stripes is reduced below a critical value, the magnetization will switch into a uniform state. The variation of the critical width with period, anisotropy constants, exchange constant, and film thickness has been determined using an analytic approach. Non-uniform magnetization states and the magnetization re…

Condensed Matter::Materials ScienceMagnetizationMagnetic anisotropyMaterials scienceCondensed matter physicsPeriod (periodic table)MonolayerThin filmCondensed Matter PhysicsCritical valueAnisotropyMicromagneticsElectronic Optical and Magnetic MaterialsJournal of Magnetism and Magnetic Materials
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Field dependence of spin and orbital moments of Fe in L10 FePt magnetic thin films

2006

Abstract The field dependence of spin and orbital magnetic moments of Fe in L10 FePt magnetic thin films was investigated using X-ray magnetic circular dichroism (XMCD). The spin and orbital moments were calculated using the sum rules; it was found that the spin and orbital moment of Fe in L10 FePt films are ∼2.5 and 0.2 μB, respectively. The relative XMCD asymmetry at Fe L3 peak on the dependence of applied field suggested that the majority magnetic moment of L10 FePt films resulted from Fe.

Condensed Matter::Materials ScienceMaterials scienceCondensed matter physicsField (physics)Magnetic momentX-ray magnetic circular dichroismMagnetic circular dichroismMoment (physics)Field dependenceThin filmCondensed Matter PhysicsSpin (physics)Electronic Optical and Magnetic MaterialsJournal of Magnetism and Magnetic Materials
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Continuous theory of switching in geometrically confined ferroelectrics

2014

A theory of ferroelectric switching in geometrically confined samples like thin films and multilayers with domain structure has been proposed. For that we use Landau–Khalatnikov (LK) equations with free energy functional being dependent on polarization gradients. In this case, the consistent theory can be developed as for thin ferroelectric films and multilayers the domain structure reduces to Fourier series in ferroelectric polarization. The specific calculations are presented for thin film ferroelectric with dead layers and ferro-/paraelectric multilayer. Our theory is generalizable to ferroelectrics and multiferroics with other geometries.

Condensed Matter::Materials ScienceMaterials scienceCondensed matter physicsMultiferroicsDielectricThin filmCondensed Matter PhysicsPolarization (waves)Fourier seriesFerroelectricityElectronic Optical and Magnetic MaterialsEnergy functionalFerroelectrics
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