Search results for "Permittivity"

showing 10 items of 176 documents

<title>Dielectric polarization in <emph type="1">x</emph>PbZn<formula><inf><roman>1/3</roman></inf>&l…

2005

Manifestation of relaxor properties in the x PbZn1/3Nb2/3O3-(1-x )PbSc1/2Nb1/203 ceramic solid solution system, similar to those observed in lead magnesium niobates, are reported. Dependence of the effective dielectric permittivity and dielectric loss on the temperature at frequencies of 0.1-10 Hz and different measuring field amplitudes E 0 are examined ceramic samples of 0.05PbZn1/3Nb2/3O3-0.95PbSc1/2Nb1/203. It is demonstrated that the temperature at which the dielectric permittivity has a maximum, T m, decreases with the increase of E 0. The dependence of T m on the frequency in both strong and weak fields is shown to follow the Vogel-Fulcher law, with Voger-Fulcher temperature decreasi…

PermittivityMaterials scienceCondensed matter physicsNiobiumchemistry.chemical_elementMineralogyDielectricFerroelectricitychemistryvisual_artPhase (matter)visual_art.visual_art_mediumDielectric lossCeramicSolid solutionSPIE Proceedings
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Dipolar Glass-Like Perovskite Sr0.8Bi0.2TiO3Ceramic

2010

In this work lead-free Sr0.8Bi0.2TiO3 ceramic have been investigated in the frequency range from 20 Hz to 36 GHz. The obtained results show pronounced dispersion below room temperature. It looks more similar to the one observed in dipolar glasses as in relaxors. Calculated relaxation time distribution function broadens towards longest relaxation times with decreasing temperature. The obtained most probable relaxation time fulfills Vogel-Fulcher relationship with the following parameters: dipole activation energy EA/kB = 1718 K, freezing temperature T0 = 65 K, attempt relaxation time, referring to dipole relaxation at very high temperatures, τ0 = 5.5·10−14 s.

PermittivityMaterials scienceCondensed matter physicsRelaxation (NMR)Activation energyCondensed Matter PhysicsElectronic Optical and Magnetic MaterialsDipoleDistribution functionNuclear magnetic resonancevisual_artvisual_art.visual_art_mediumCeramicCole–Cole equationPerovskite (structure)Ferroelectrics
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Dynamics of Polar Clusters in PMN Ceramics: Comparison with PMN Single Crystal

2006

The dielectric permittivity of PMN ceramics was measured in the frequency range from 20 Hz to 37 GHz. From the frequency dependence of the real and imaginary parts of dielectric permittivity, the distribution of relaxation times f(τ) was calculated. The f(τ) function broadens significantly, and the second maximum appears below the 270 K temperature. The dielectric response and also relaxation time distribution of PMN ceramics was compared with the previous results of PMN single crystal. The results showed that dynamics of polar nano regions in PMN ceramics is suppressed due to the small size of grains in the ceramics.

PermittivityMaterials scienceCondensed matter physicsRelaxation (NMR)Dynamics (mechanics)Condensed Matter PhysicsGrain sizeElectronic Optical and Magnetic Materialsvisual_artNano-visual_art.visual_art_mediumPolarCeramicSingle crystalFerroelectrics
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Scattering of electromagnetic waves from a graphene-coated thin cylinder of left-handed metamaterial

2017

Abstract In this paper, we explored the scattering behavior of thin cylinders made of a left-handed material (LHM) and coated by a monoatomic graphene layer. A spectral tunability of the resonance peaks is evidenced by altering the chemical potential of the graphene coating, a fact that occurs at any state of polarization of the incident plane wave in opposition to the case of scatterers of dielectric core. On the contrary, no invisibility condition can be satisfied for dielectric environments. A singular performance is also found for cylinders with permittivity and permeability near zero. Practical implementations of our results can be carried out in sensing and wave manipulation driven by…

PermittivityMaterials scienceCondensed matter physicsScatteringGraphenePlane waveMetamaterialPhysics::OpticsFOS: Physical sciences02 engineering and technologyDielectric021001 nanoscience & nanotechnologyPolarization (waves)01 natural sciencesElectromagnetic radiationAtomic and Molecular Physics and OpticsElectronic Optical and Magnetic Materialslaw.invention010309 opticslaw0103 physical sciencesElectrical and Electronic Engineering0210 nano-technologyPhysics - OpticsOptics (physics.optics)
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Improvement of the P/E window in nanocrystal memories by the use of high-k materials in the control dielectric

2005

Abstract In this paper nanocrystals memories program curves are shown and their saturation points (steady state condition) can be observed. We present a model that relates the voltage shift at the steady state ( Δ V T ss ) to the gate program voltage (VG). Starting from a good agreement between experimental data and simulations for nanocrystals memory cells with a conventional dielectric structure (SiO2), we present the estimated values of the Δ V T ss vs VG for different control stacks. Our investigation shows an improvement if a material with a high dielectric constant and a small conduction band-offset with respect to the SiO2, is placed between two SiO2 layers when the first of them is …

PermittivityMaterials scienceCondensed matter physicsbusiness.industryElectrical engineeringDielectricCondensed Matter PhysicsThermal conductionSettore ING-INF/01 - ElettronicaAtomic and Molecular Physics and OpticsBand offsetSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsNanocrystalControl and Systems EngineeringElectrical and Electronic EngineeringSafety Risk Reliability and QualitybusinessSaturation (magnetic)High-κ dielectricVoltage
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Structure and Lattice Dynamics in PLZT 8/65/35 Ceramics Irradiated by High-Current Pulsed Electron Beam

2004

The comprehensive study of high-current pulsed electron irradiation effect on the structure and lattice dynamics as well as optical properties of PLZT 8/65/35 ceramics have been performed. X-ray powder diffraction studies shown the transformation of the rhombohedral perovskite structure R3m (Z = 1) into orthorhombic Pmmm (Z = 1) for the sample irradiated by one pulse (dose 4 × 1014 electrons/cm2) and, as a consequence, the changes in number of phonon modes position, oscillators strength and damping in IR and Raman spectroscopy data. However neutron powder diffraction measurements of multiple irradiated samples have not been revealed any structural distortions. Dielectric parameters have sho…

PermittivityMaterials scienceCondensed matter physicsbusiness.industryNeutron diffractionDielectricElectronCondensed Matter PhysicsElectronic Optical and Magnetic MaterialsCondensed Matter::Materials Sciencesymbols.namesakeOpticssymbolsElectron beam processingOrthorhombic crystal systembusinessRaman spectroscopyPowder diffractionFerroelectrics
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Influence of Uniaxial Pressure on Dielectric Properties and Aging Effect of BiFeO3Ceramic

2015

The external stress (0–1500 bar) dependence of dielectric properties and an aging effect of BiFeO3 ceramic has been investigated. The electric permittivity and dielectric losses first increased (up to about 700 bar) and next decreased with uniaxial pressure applied parallel to the ac field direction, while increased with the stress perpendicularly applied. It was suggested that combination of the de-aging, clamping of the domain walls, and the polarization reorientation mechanisms can be responsible for these changes. The aging effect is followed logarithmic law and is related to the relaxation of the domain structure towards an equilibrium configuration.

PermittivityMaterials scienceDielectricCondensed Matter PhysicsClampingElectronic Optical and Magnetic MaterialsStress (mechanics)visual_artvisual_art.visual_art_mediumRelaxation (physics)Dielectric lossCeramicComposite materialPolarization (electrochemistry)Ferroelectrics
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Comparison of the Influences of a Perpendicular and Parallel Uniaxial Stress on the Dielectric and Ferroelectric Properties of Fe Doped BaTiO3Ceramics

2014

The dielectric and ferroelectric properties of Fe-doped BaTiO3 ceramic under uniaxial stress applied perpendicular and parallel to the electric field are presented and analyzed. For the dielectric properties, the results showed that the uniaxial stress reduced an electric permittivity and dielectric losses for the both directions of applied stress. It was also found that an applied uniaxial pressure also enhanced a diffuse phase transformation behaviour. In the case of the ferroelectric properties the applied stress weakens a polarization when it is applied parallel (p∥ac) to the electric field. These results were interpreted through the stress induced domain switching process.

PermittivityMaterials scienceDielectricCondensed Matter PhysicsFerroelectricityElectronic Optical and Magnetic MaterialsStress (mechanics)Condensed Matter::Materials SciencePolarization densityvisual_artElectric fieldvisual_art.visual_art_mediumDielectric lossCeramicComposite materialFerroelectrics
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Uniaxial Pressure Effects on the Dielectric Properties of the PLZT-x/65/35 (x = 9.75 and 10) Ceramics

2012

The influence of uniaxial pressure (0-1000 bars) applied parallel to the ac electric field on the dielectric properties of PLZT-x/65/35 ceramics (x = 9.75 and 10) was investigated. The results show that the applied stress has a significant influence on the dielectric properties of PLZT ceramics. Applying uniaxial pressure leads to the reduction of the electric permittivity (ϵ) peak and the frequency dispersion. Moreover, the peak of ϵ becomes diffuse and shifts to a higher temperature with increasing pressure. The results show that applying uniaxial pressure induces similar effects as the increase in Ti−ion concentration in the PZT system. We interpreted our results based on the domain swit…

PermittivityMaterials scienceDielectricCondensed Matter PhysicsUniaxial pressureFerroelectricityElectronic Optical and Magnetic MaterialsStress (mechanics)visual_artElectric fieldFrequency dispersionvisual_art.visual_art_mediumCeramicComposite materialFerroelectrics
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Effect of Electromechanical Loading on the Dielectric Properties of PLZT−x/65/35 Ceramics (x = 8 and 8.5)

2011

The influence of uniaxial pressure (0-800 bars) applied parallel to the ac electric field on the dielectric properties of La−modified lead–zirconate−titanate ceramics with the Zr/Ti ratio of 65/35 was investigated. Applying uniaxial pressure leads to the reduction of the peak intensity of the electric permittivity (ϵ), of the frequency dispersion as well as of the dielectric hysteresis. The peak intensity of ϵ becomes diffuse and shifts with increasing the pressure. Our results show that applying uniaxial pressure induces similar effects as increasing the Ti−ion concentration in PZT system. We interpreted our results based on domain switching processes under the action of combined electrome…

PermittivityMaterials scienceDielectricDielectric hysteresisCondensed Matter PhysicsUniaxial pressureElectronic Optical and Magnetic MaterialsStress (mechanics)Electric fieldvisual_artvisual_art.visual_art_mediumCeramicComposite materialPerovskite (structure)Ferroelectrics
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