Search results for "Electrical resistivity and conductivity"

showing 10 items of 317 documents

Stability, sub-gap current, 1/f-noise, and elemental depth profiling of annealed Al:Mn-AlOX-Al normal metal-insulator-superconducting tunnel junctions

2016

In this paper we report a study of the effect of vacuum annealing at 400◦C on the properties of normal metal-insulator-superconductor (NIS) tunnel junctions, with manganese doped aluminium (Al:Mn) as the normal metal, aluminum as the superconductor and amorphous aluminum oxide as the tunneling barrier (Al:Mn-AlOx-Al). The annealing treatment improves the stability of the junctions, increases their tunneling resistance and does not have a negative impact on the low-temperature current-voltage characteristics. The measured 1 / f resistance noise of the junctions also changes after annealing, in the best case decreasing by over an order of magnitude. All these observations show that annealing …

Materials scienceAnnealing (metallurgy)General Physics and Astronomychemistry.chemical_element02 engineering and technologyManganese01 natural sciencesAluminiumElectrical resistivity and conductivitysuperconducting tunnel junctions0103 physical sciences010306 general physicsQuantum tunnellingSuperconductivityta114Condensed matter physicsDopingMetallurgy021001 nanoscience & nanotechnologylcsh:QC1-999Amorphous solidtunnel junctionschemistrysuperconducting metals0210 nano-technologylcsh:PhysicsAIP Advances
researchProduct

Tuning the Direct and Indirect Excitonic Transitions of h-BN by Hydrostatic Pressure

2021

The pressure dependence of the direct and indirect bandgap transitions of hexagonal boron nitride is investigated using optical reflectance under hydrostatic pressure in an anvil cell with sapphire windows up to 2.5 GPa. Features in the reflectance spectra associated with the absorption at the direct and indirect bandgap transitions are found to downshift with increasing pressure, with pressure coefficients of −26 ± 2 and −36 ± 2 meV GPa–1, respectively. The GW calculations yield a faster decrease of the direct bandgap with pressure compared to the indirect bandgap. Including the strong excitonic effects through the Bethe–Salpeter equation, the direct excitonic transition is found to have a…

Materials scienceBand gapExcitonBinding energyHydrostatic pressurePhysics::Optics02 engineering and technology01 natural sciences7. Clean energyMolecular physicsArticleCrystalCondensed Matter::Materials ScienceElectrical resistivity and conductivity0103 physical sciencesElectrical conductivityPhysical and Theoretical Chemistry010306 general physicsAbsorption (electromagnetic radiation)EnergyOptical properties021001 nanoscience & nanotechnologySurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsGeneral Energy[PHYS.COND.CM-MS]Physics [physics]/Condensed Matter [cond-mat]/Materials Science [cond-mat.mtrl-sci]ExcitonsAbsorptionDirect and indirect band gaps0210 nano-technology
researchProduct

Epoxy Resin/Carbon Black Composites Below the Percolation Threshold

2013

International audience; A set of epoxy resin composites filled with 0.25-2.0 wt.% of commercially available ENSACO carbon black (CB) of high and low surface area (CBH and CBL respectively) has been produced. The results of broadband dielectric spectroscopy of manufactured CB/epoxy below the percolation threshold in broad temperature (200 K to 450 K) and frequency (20 Hz to 1 MHz) ranges are reported. The dielectric properties of composites below the percolation threshold are mostly determined by alpha relaxation in pure polymer matrix. The glass transition temperature for CB/epoxy decreases in comparison with neat epoxy resin due to the extra free volume at the polymer-filler interface. At …

Materials scienceBiomedical EngineeringBioengineering02 engineering and technologyDielectric01 natural sciences[SPI.MAT]Engineering Sciences [physics]/MaterialsElectrical resistivity and conductivity0103 physical sciences[SPI.MECA.MEMA]Engineering Sciences [physics]/Mechanics [physics.med-ph]/Mechanics of materials [physics.class-ph]General Materials ScienceComposite materialSettore CHIM/02 - Chimica Fisica010302 applied physicschemistry.chemical_classification[SPI.ACOU]Engineering Sciences [physics]/Acoustics [physics.class-ph]Percolation thresholdGeneral ChemistryCarbon blackPolymerEpoxy[CHIM.MATE]Chemical Sciences/Material chemistry021001 nanoscience & nanotechnologyCondensed Matter Physics[SPI.ELEC]Engineering Sciences [physics]/ElectromagnetismSettore ING-IND/22 - Scienza E Tecnologia Dei Materiali[CHIM.POLY]Chemical Sciences/PolymerschemistryNanocomposite Carbon black Percolation threshold electrical propertiesvisual_artvisual_art.visual_art_mediumAntistatic agent[PHYS.COND.CM-MS]Physics [physics]/Condensed Matter [cond-mat]/Materials Science [cond-mat.mtrl-sci][SPI.MECA.THER]Engineering Sciences [physics]/Mechanics [physics.med-ph]/Thermics [physics.class-ph]0210 nano-technologyGlass transition
researchProduct

Two-terminal nanoelectromechanical devices based on germanium nanowires.

2009

A two-terminal bistable device, having both ON and OFF regimes, has been demonstrated with Ge nanowires using an in situ TEM-STM technique. The function of the device is based on delicately balancing electrostatic, elastic, and adhesion forces between the nanowires and the contacts, which can be controlled by the applied voltage. The operation and failure conditions of the bistable device were investigated, i.e. the influence of nanowire diameter, the surface oxide layer on the nanowires and the current density. During ON/OFF cycles the Ge nanowires were observed to be more stable than carbon nanotubes, working at similar conditions, due to the higher mechanical stability of the nanowires. …

Materials scienceBistabilityMechanical EngineeringNanowirechemistry.chemical_elementBioengineeringGermaniumNanotechnologyGeneral ChemistryCarbon nanotubeCondensed Matter Physicslaw.inventionchemistrylawElectrical resistivity and conductivityGeneral Materials ScienceScanning tunneling microscopeVapor–liquid–solid methodCurrent densityNano letters
researchProduct

Electromagnetic shielding efficiency in Ka-band: carbon foam versus epoxy/carbon nanotube composites

2012

The wide application of microwaves stimulates searching for new materials with high electrical conductivity and electromagnetic (EM) interference shielding effectiveness (SE). We conducted a comparative study of EM SE in K a -band demonstrated by ultra-light micro-structural porous carbon solids (carbon foams) of different bulk densities, 0.042 to 0.150  g/cm 3 , and conventional flexible epoxy resin filled with carbon nanotubes (CNTs) in small concentrations, 1.5 wt.%. Microwave probing of carbon foams showed that the transmission through a 2 mm-thick layer strongly decreases with decreasing the pore size up to the level of 0.6%, due to a rise of reflectance ability. At the same time, 1 mm…

Materials scienceCarbon nanofoamchemistry.chemical_elementmicrowaves.Carbon nanotubeepoxy resinlaw.inventionElectrical resistivity and conductivitylawcompositecarbon nanotubeComposite materialchemistry.chemical_classificationshieldingSettore CHIM/05 - Scienza E Tecnologia Dei Materiali PolimericiEpoxyPolymerCondensed Matter PhysicsElectronic Optical and Magnetic Materialschemistryvisual_artElectromagnetic shieldingvisual_art.visual_art_mediumcarbon foamCarbonMicrowaveJournal of Nanophotonics
researchProduct

High-temperature transport properties of La0.67Ca0.33MnO3 films

1999

Abstract The giant negative magnetoresistance in manganites has been investigated from the Curie temperature T c up to 600 K (2.6 T c ) in magnetic fields up to 8 T. Nonadiabatic small polaron hopping can successfully describe the temperature dependence of the resistivity. The magnetic field influence on the activation energy is explained by the interaction of unclustered ions with small spin clusters of four ions.

Materials scienceColossal magnetoresistanceCondensed matter physicsMagnetoresistanceGiant magnetoresistanceActivation energyCondensed Matter PhysicsPolaronElectronic Optical and Magnetic MaterialsMagnetic fieldCondensed Matter::Materials ScienceElectrical resistivity and conductivityCurie temperatureCondensed Matter::Strongly Correlated ElectronsJournal of Magnetism and Magnetic Materials
researchProduct

Magnetic properties of the TbMn2 single crystals

1999

Abstract Single crystals of TbMn 2 were grown by the Czochralski method from a levitated melt. Results of electrical resistivity, magnetization in strong magnetic fields along the principal crystallographic directions, AC and DC magnetic susceptibility and the temperature dependence of the lattice parameter are presented.

Materials scienceCondensed matter physicsCondensed Matter PhysicsMagnetic susceptibilityElectronic Optical and Magnetic MaterialsMagnetic fieldMagnetizationMagnetic anisotropyLattice constantElectrical resistivity and conductivityCondensed Matter::SuperconductivityCzochralski methodElectrical and Electronic EngineeringSingle crystalPhysica B: Condensed Matter
researchProduct

Electronic transport properties of electron- and hole-doped semiconductingC1bHeusler compounds:NiTi1−xMxSn(M=Sc,V)

2010

The substitutional series of Heusler compounds ${\text{NiTi}}_{1\ensuremath{-}x}{M}_{x}\text{Sn}$ (where $M=\text{Sc},\text{V}$ and $0lx\ensuremath{\le}0.2$) were synthesized and investigated with respect to their electronic structure and transport properties. The results show the possibility to create $n$-type and $p$-type thermoelectrics within one Heusler compound. The electronic structure and transport properties were calculated by all-electron ab initio methods and compared to the measurements. Hard x-ray photoelectron spectroscopy was carried out and the results are compared to the calculated electronic structure. Pure NiTiSn exhibits massive ``in gap'' states containing about 0.1 ele…

Materials scienceCondensed matter physicsDopingAb initioElectronic structureengineering.materialCondensed Matter PhysicsHeusler compoundThermoelectric materialsElectronic Optical and Magnetic MaterialsAb initio quantum chemistry methodsElectrical resistivity and conductivitySeebeck coefficientengineeringPhysical Review B
researchProduct

Direct observation of Drude behavior in the heavy-fermion by broadband microwave spectroscopy

2005

Abstract Previous optical studies on the heavy-fermion system UPd 2 Al 3 down to frequencies of about 1 cm - 1 ( = 30 GHz ) revealed a well-pronounced pseudogap at low frequencies (below 3 cm - 1 ) that was attributed to magnetic correlations. Thus, the optical conductivity at even lower frequencies is of notable interest because the Drude roll-off (the high-frequency characteristic of a metal which will give information on the quasiparticle dynamics) remained hidden at extremely low frequencies. Using a novel cryogenic broadband microwave spectrometer employing the Corbino geometry we have studied the complex optical conductivity of UPd 2 Al 3 thin films in the frequency range from 45 MHz …

Materials scienceCondensed matter physicsElectrical resistivity and conductivityBand gapElectrical and Electronic EngineeringConductivityCondensed Matter PhysicsPseudogapDrude modelOptical conductivityMicrowaveSpectral lineElectronic Optical and Magnetic MaterialsPhysica B: Condensed Matter
researchProduct

Thin film preparation of the low charge carrier density Kondo system CeSb

1999

Abstract We report the thin film preparation of CeSb by means of molecular beam epitaxy (MBE) onto sapphire (1 1 −2 0) substrates. Above a substrate temperature of about 300°C CeSb crystallizes in (0 0 1) orientation. The growth mode of the films changes from a fiber textured to an epitaxial mode for deposition temperatures above 900°C. Although the specific resistivity is enhanced the characteristic energy scales, like the Kondo temperature TK and the magnetic ordering temperature TN, are not changed significantly.

Materials scienceCondensed matter physicsElectrical resistivity and conductivitySapphireSubstrate (electronics)Electrical and Electronic EngineeringThin filmCondensed Matter PhysicsEpitaxyNéel temperatureCharacteristic energyElectronic Optical and Magnetic MaterialsMolecular beam epitaxyPhysica B: Condensed Matter
researchProduct