Search results for "Static"

showing 10 items of 1528 documents

Band structure of indium selenide investigated by intrinsic photoluminescence under high pressure

2004

This paper reports on photoluminescence experiments in $n$-type indium selenide $(T=300\phantom{\rule{0.3em}{0ex}}\mathrm{K})$ under hydrostatic pressure up to 7 GPa at low and high excitation densities. Photoluminescence measurements at low excitation density exhibit a broad band around the energy of the direct band gap of $\mathrm{InSe}$ and with the same pressure dependence. The reversible increase of its linewidth above $1\phantom{\rule{0.3em}{0ex}}\mathrm{GPa}$ is associated to a direct-to-indirect band-gap crossover between valence band maxima. The reversible decrease of its intensity above $4\phantom{\rule{0.3em}{0ex}}\mathrm{GPa}$ is interpreted as evidence of a direct-to-indirect b…

Materials scienceCondensed matter physicsBand gapImage (category theory)Hydrostatic pressureDirect and indirect band gapsPhotoluminescence excitationCondensed Matter PhysicsEnergy (signal processing)SemimetalQuasi Fermi levelElectronic Optical and Magnetic MaterialsPhysical Review B
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Three-dimensional poroelastic metamaterials with extremely negative or positive effective static volume compressibility

2018

Abstract Recently, three-dimensional poroelastic metamaterials have been introduced that show an unusual isotropic increase of their effective volume when increasing the hydrostatic pressure of the surrounding air. This behavior corresponds to a negative effective static volume compressibility. Here, we present significantly simplified metamaterial architectures, which are composed of just one rather than eight hollow sealed functional elements within each cubic unit cell. On cubic symmetry microstructured polymer samples made by 3D laser printing, we measure a negative effective compressibility of about κ eff = − 4 . 7 % ∕ bar under pressure control. This value is six times larger than pre…

Materials scienceCondensed matter physicsMechanical EngineeringPoromechanicsHydrostatic pressureIsotropyMetamaterialBioengineering02 engineering and technology021001 nanoscience & nanotechnology01 natural sciencesSymmetry (physics)Volume (thermodynamics)Mechanics of Materials0103 physical sciencesCompressibilityChemical Engineering (miscellaneous)010306 general physics0210 nano-technologyEngineering (miscellaneous)Bar (unit)Extreme Mechanics Letters
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Lattice phonon modes of the high-pressure phase CuCl-IV

1999

Raman spectra of isotopically pure CuCl samples ${(}^{63}\mathrm{CuCl}$ and ${}^{65}\mathrm{CuCl})$ were measured under hydrostatic pressure up to 14 GPa at low temperature $(5 \mathrm{K}).$ Up to six Raman modes were resolved for the binary BC8-analog phase CuCl-IV in the range from 4.1 to 14 GPa. The phonon dispersion relations of this phase were calculated within a rigid ion model. Based on this calculation an assignment for the observed Raman-active modes is proposed. The calculated pressure dependences of mode frequencies reproduce the experimental results. Raman spectra support the existence of the phase CuCl-IIa in a narrow pressure range from 3.3 to 4.1 GPa.

Materials scienceCondensed matter physicsPhononHydrostatic pressureMolecular physicsIonPressure rangesymbols.namesakeLattice (order)High pressureDispersion relationsymbolsCondensed Matter::Strongly Correlated ElectronsRaman spectroscopy
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Polyamorphic transformation induced by electron irradiation ina-SiO2glass

2009

We report a study by electron paramagnetic resonance of amorphous silicon dioxide $(a{\text{-SiO}}_{2})$ irradiated by 2.5 MeV electrons in the dose range from $1.2\ifmmode\times\else\texttimes\fi{}{10}^{3}$ to $5\ifmmode\times\else\texttimes\fi{}{10}^{6}\text{ }\text{kGy}$. By measuring the change in the splitting of the primary $^{29}\text{S}\text{i}$ hyperfine doublet of the ${E}_{\ensuremath{\gamma}}^{\ensuremath{'}}$ centers we evidenced an irradiation induced local (around the defects) densification of $a{\text{-SiO}}_{2}$. Our data show that the local degree of densification of the materials is significantly higher than that obtained by mean density measurements, suggesting that the …

Materials scienceDegree (graph theory)Hydrostatic pressureElectronCondensed Matter PhysicsCrystallographic defectElectronic Optical and Magnetic Materialslaw.inventionParamagnetismdensification electron beam effects glass hyperfine interactions paramagnetic resonance polymorphic transformationsNuclear magnetic resonancelawElectron beam processingAtomic physicsElectron paramagnetic resonanceHyperfine structurePhysical Review B
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Compound Membranes of Linearly Polymerized and Cross-Linked Macrolipids with Phospholipids: Preparation, Microstructure and Applications

1985

Methods for the assembly and for studying the structural and dynamic properties of partially polymerized membranes are described. Mixtures of two classes of polymerizable amphiphiles with diacyl phosphatidylcholines are studied: (1) phosphatidylcholines carrying a diacetylene group per chain (abbreviated as (m,n)-DIINPC (where m + n + 6 equals number of C-Atoms per chain) and (2) a phospholipid-like molecule with a polymerizable methacryl ligand connected to the phosphate head group via (CH2CH2O)m spacers which is abbreviated as (m.n)-POMECY (n = number of C-atoms per chain). — Phase diagrams of the lipid mixtures are established by static light scattering in combination with freeze fractur…

Materials scienceDiacetyleneGeneral Chemical EngineeringVesicleDegree of polymerizationPhotobleachingchemistry.chemical_compoundCrystallographyMonomerMembranechemistryPolymerizationPolymer chemistryStatic light scatteringBerichte der Bunsengesellschaft für physikalische Chemie
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Mode expansion for the density profiles of crystal–fluid interfaces: hard spheres as a test case

2012

We present a technique for analyzing the full three-dimensional density profiles of a planar crystal-fluid interface in terms of density modes. These density modes can also be related to crystallinity order parameter profiles which are used in coarse-grained, phase field type models of the statics and dynamics of crystal-fluid interfaces and are an alternative to crystallinity order parameters extracted from simulations using local crystallinity criteria. We illustrate our results for the hard sphere system using finely-resolved, three-dimensional density profiles from density functional theory of fundamental measure type.

Materials scienceField (physics)FOS: Physical sciencesHard spheresCondensed Matter - Soft Condensed MatterCondensed Matter PhysicsMeasure (mathematics)Computational physicsCrystallinityPlanarPhase (matter)Soft Condensed Matter (cond-mat.soft)General Materials ScienceDensity functional theoryStaticsJournal of Physics: Condensed Matter
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Pressure dependence of the refractive index in wurtzite and rocksalt indium nitride

2014

We have performed high-pressure Fourier transform infrared reflectance measurements on a freestanding InN thin film to determine the refractive index of wurtzite InN and its high-pressure rocksalt phase as a function of hydrostatic pressure. From a fit to the experimental refractive-index curves including the effect of the high-energy optical gaps, phonons, free carriers, and the direct (fundamental) band-gap in the case of wurtzite InN, we obtain pressure coefficients for the lowfrequency (electronic) dielectric constant e1 . Negative pressure coefficients of -8.8 × 10-2 GPa-1 and -14.8 × 10-2 GPa-1 are obtained for the wurtzite and rocksalt phases, respectively. The results are discussed …

Materials scienceIndium nitridePhysics and Astronomy (miscellaneous)Condensed matter physicsBand gapHydrostatic pressureRefractive indexDielectricHigh pressureCondensed Matter::Materials Sciencechemistry.chemical_compoundchemistryBand gapPhononsCritical point phenomenaThin filmElectronic band structureRefractive indexWurtzite crystal structureApplied Physics Letters
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Electrostatic model and NMR results for EFG tensors in tetragonal BaTiO3

1990

Abstract We present 47,49Ti and 135,137Ba NMR second-order quadrupolar rotation patterns in a tetragonal single domain crystal of BaTiO3. These data will be analysed in terms of a ionic polarizable point multipole model.

Materials scienceIonic bondingCondensed Matter PhysicsMolecular physicsElectronic Optical and Magnetic MaterialsCrystalCondensed Matter::Materials ScienceTetragonal crystal systemNuclear magnetic resonancePolarizabilityPhysics::Atomic and Molecular ClustersCondensed Matter::Strongly Correlated ElectronsPhysics::Atomic PhysicsSingle domainMultipole expansionRotation (mathematics)Electrostatic modelFerroelectrics
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Quasi-static magnetoresistive sensor modeling for current-time conversion circuit applications

2011

In this paper we report a current-to-time converter (CTC) suitable for current sensor monitoring in low power applications. Based on a discrete resistence-to-frequency converter and a Giant MagnetoResistance (GMR) current sensor. Simulations have been done using a quasi-static electrical Verilog-A model for the GMR current sensor. A reduced set of parameters has been extracted to characterize the GMR sensor's behavior. The application has been analyzed making use of different sensors, whose device parameters were previously extracted. Finally, the accuracy of the models has been tested by comparing with experimental transient measurements.

Materials scienceMagnetoresistancebusiness.industryLow-power electronicsElectronic engineeringElectrical engineeringGiant magnetoresistanceCurrent sensorTransient (oscillation)businessDevice parametersQuasistatic processPower (physics)Proceedings of the 8th Spanish Conference on Electron Devices, CDE'2011
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Non-equilibrium melting of colloidal crystals in confinement

2009

International audience; We report on a novel and flexible experiment to investigate the non-equilibrium melting behaviour of model crystals made from charged colloidal spheres. In a slit geometry polycrystalline material formed in a low salt region is driven by hydrostatic pressure up an evolving gradient in salt concentration and melts at large salt concentration. Depending on particle and initial salt concentration, driving velocity and the local salt concentration complex morphologic evolution is observed. Crystal-melt interface positions and the melting velocity are obtained quantitatively from time resolved Bragg- and polarization microscopic measurements. A simple theoretical model pr…

Materials scienceMechanical equilibriumHydrostatic pressureFOS: Physical sciencesCondensed Matter - Soft Condensed MatterColloidal crystal010402 general chemistryCondensed Matter Physics01 natural sciences0104 chemical scienceslaw.inventionShear (sheet metal)Condensed Matter::Soft Condensed MatterChemical physicslawCondensed Matter::Superconductivity0103 physical sciencesPhysical SciencesRelaxation (physics)ParticleSoft Condensed Matter (cond-mat.soft)Crystallite010306 general physicsPolarization (electrochemistry)
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