Search results for "engineering.material"

showing 10 items of 2352 documents

Tunable multifunctional topological insulators in ternary Heusler compounds

2010

Recently the Quantum Spin Hall effect (QSH) was theoretically predicted and experimentally realized in a quantum wells based on binary semiconductor HgTe[1-3]. QSH state and topological insulators are the new states of quantum matter interesting both for fundamental condensed matter physics and material science[1-11]. Many of Heusler compounds with C1b structure are ternary semiconductors which are structurally and electronically related to the binary semiconductors. The diversity of Heusler materials opens wide possibilities for tuning the band gap and setting the desired band inversion by choosing compounds with appropriate hybridization strength (by lattice parameter) and the magnitude o…

SuperconductivityCondensed Matter - Materials ScienceMaterials scienceCondensed Matter - Mesoscale and Nanoscale PhysicsCondensed matter physicsBand gapbusiness.industryMechanical EngineeringMaterials Science (cond-mat.mtrl-sci)FOS: Physical sciencesDisordered Systems and Neural Networks (cond-mat.dis-nn)General ChemistryCondensed Matter - Disordered Systems and Neural NetworksCondensed Matter PhysicsSemiconductorQuantum spin Hall effectMechanics of MaterialsHall effectTopological insulatorMesoscale and Nanoscale Physics (cond-mat.mes-hall)General Materials SciencebusinessTernary operationQuantum wellNature Materials
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Giant negative magnetoresistance in GdI2

2000

Abstract GdI 2 is a layered d 1 compound which is isostructural with and nominally isoelectronic to the superconductors 2H–TaS 2 and 2H–NbSe 2 . GdI 2 orders ferromagnetically at 276(2) K and displays large negative magnetoresistance ∼70% at 7 T close to room temperature. At 10 K the saturation magnetization is 7.33(5) μ B in good agreement with the value predicted from spin polarized band structure calculations.

SuperconductivityCondensed matter physicsFerromagnetismMagnetoresistanceMechanics of MaterialsChemistryMechanical EngineeringMaterials ChemistryMetals and AlloysIsostructuralElectronic band structureSpin-½Journal of Alloys and Compounds
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Coherent quantum phase slip

2012

A hundred years after discovery of superconductivity, one fundamental prediction of the theory, the coherent quantum phase slip (CQPS), has not been observed. CQPS is a phenomenon exactly dual to the Josephson effect: whilst the latter is a coherent transfer of charges between superconducting contacts, the former is a coherent transfer of vortices or fluxes across a superconducting wire. In contrast to previously reported observations of incoherent phase slip, the CQPS has been only a subject of theoretical study. Its experimental demonstration is made difficult by quasiparticle dissipation due to gapless excitations in nanowires or in vortex cores. This difficulty might be overcome by usin…

SuperconductivityJosephson effectPhysicsMultidisciplinaryta114Condensed matter physicsSuperconducting wireCondensed Matter - SuperconductivityNanowireFOS: Physical sciencesengineering.materialSuperconductivity (cond-mat.supr-con)Quantum stateQuantum mechanicsCondensed Matter::SuperconductivityQuasiparticleengineeringQuantum metrologyQuantum tunnelling
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(Bi,Pb)2Sr2Ca2Cu3O10+δ superconductor composites: Ceramics vs. fibers

1991

Abstract Well characterized (Bi, Pb) 2 Sr 2 Ca 2 Cu 3 O 10+δ superconductor powder has been used to prepare superconductor-glass, -metal and -alloy composites through solid state reaction method. A recently developed Laser Floating Zone (LFZ) apparatus has been used to transform the ceramic precursors into oriented fibers. The diamagnetic properties have been studied by a.c. susceptibility. The microstructure of fibers has been studied by SEM and compared with that of the original ceramic precursors. XRD has been used to study phase composition on representative composite samples and fibers. The results indicate some potential for the 2223-Ag composite, which displays improved diamagnetic p…

SuperconductivityMaterials scienceComposite numberAlloyEnergy Engineering and Power Technologyengineering.materialCondensed Matter PhysicsMicrostructureElectronic Optical and Magnetic MaterialsMetalvisual_artvisual_art.visual_art_mediumengineeringDiamagnetismCeramicFiberElectrical and Electronic EngineeringComposite materialPhysica C: Superconductivity
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Crystal Structure of Heusler Compounds

2013

Heusler compounds are promising materials in many fields of contemporary research. The spectrum of their possible applications ranges from magnetic and magneto-mechanical materials over semiconductors and thermoelectrics to superconductors. An important feature of the Heusler compounds is the possibility of controlling the valence electron concentration by partial substitution of elements. On the other hand, the properties also depend on the degree of ordering of the crystal structure. In general, Heusler compounds crystallize in the Cu2MnAl-type structure but in many cases certain types of disorder are observed. In this chapter, a detailed description of the crystal structure as well as di…

SuperconductivityMaterials scienceCondensed matter physicsSpin polarizationbusiness.industryCrystal structureengineering.materialThermoelectric materialsHeusler compoundCondensed Matter::Materials ScienceSemiconductorengineeringCondensed Matter::Strongly Correlated ElectronsWyckoff positionsValence electronbusiness
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Ni-based superconductor: Heusler compoundZrNi2Ga

2008

This work reports on the novel Heusler superconductor ZrNi2Ga. Compared to other nickel-based superconductors with Heusler structure, ZrNi2Ga exhibits a relatively high superconducting transition temperature of Tc=2.9 K and an upper critical field of 1.5 T. Electronic structure calculations show that this relatively high transition temperature is caused by a van Hove singularity, which leads to an enhanced density of states at the Fermi energy. The van Hove singularity originates from a higher order valence instability at the L-point in the electronic structure. The enhanced density of states at the Fermi level was confirmed by specific heat and susceptibility measurements. Although many He…

SuperconductivityMaterials scienceCondensed matter physicsVan Hove singularityFermi levelFermi energyengineering.materialCondensed Matter PhysicsHeusler compoundElectronic Optical and Magnetic MaterialsCondensed Matter::Materials Sciencesymbols.namesakeFerromagnetismCondensed Matter::SuperconductivityDensity of statesengineeringsymbolsCondensed Matter::Strongly Correlated ElectronsCritical fieldPhysical Review B
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Phase Slip Phenomena in Ultra-Thin Superconducting Wires

2006

We present results on phase-slip phenomena in a superconducting wire which can be considered as quasi-one dimensional (1D) if its characteristic transverse dimension \( \sqrt \sigma\) (√ being the cross section) is smaller than the coherence length Λ(T). The shape of the bottom part of the resistive transition R(T) of a 1D superconducting strip is described by the model of phase slips activation. If the wire is infinitely long, then there is always a finite probability that a small part of the sample is instantly driven normal.

SuperconductivityPhysicsCross section (physics)Resistive touchscreenCondensed matter physicsSuperconducting wirePhase (waves)engineeringSigmaPhase slipengineering.materialCoherence length
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Superconductor-Diamond Hybrid Quantum System

2016

This chapter describes recent progress on research into superconducting flux qubit, NV diamond, and superconductor-diamond hybrid quantum systems. First, we describe important physical properties of superconducting macroscopic artificial atoms i.e., the tunability of the qubit energy level spacing, the coherence property, an example of strong coupling to another quantum system such as an LC harmonic oscillator, and qubit state readout through a Josephson bifurcation amplifier. We then introduce the NV center in diamond as an intriguing candidate for quantum information processing, which offers excellent multiple accessibility via visible light, microwaves and magnetic fields. Finally, we de…

SuperconductivityPhysicsFlux qubitbusiness.industryDiamond02 engineering and technologyengineering.material021001 nanoscience & nanotechnology01 natural sciencesDark stateCondensed Matter::SuperconductivityQubit0103 physical sciencesQuantum systemengineeringOptoelectronics010306 general physics0210 nano-technologybusinessQuantumCoherence (physics)
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Capturing digital data of rock magnetic, gamma-ray and IR spectrometry for in-situ quality control and for the study of the physical–chemical regime …

2014

Abstract Residual kaolin deposits are operated on a worldwide basis. The majority of them is derived from chemical weathering of felsic rocks during the Cenozoic. This is true for the kaolin deposits on the western edge of the Bohemian Massif. Here this type of deposit provides industrial minerals for the ceramic industry in SE Germany. This raw material formed under tropical climatic conditions during the Miocene and Pliocene across a vast peneplain. Only within the Naab-Wondreb Depression, however, were economic accumulations preserved from erosion. Here near Tirschenreuth, kaolin has been mined since its discovery in 1830. The semi-consolidated regolith is composed of quartz and opaline …

Supergene (geology)LithologyGeochemistryMineralogyGeologyWeatheringengineering.materialFeldsparGeochemistry and Petrologyvisual_artGenetic modelIllitevisual_art.visual_art_mediumengineeringKaoliniteEconomic GeologyClay mineralsGeologyOre Geology Reviews
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The dynamics of magnetic ordering in a natural hemo-ilmenite solid solution

2007

Geophysical Journal International, 169 (3)

Superparamagnetic clustersHemo-ilmeniteMaterials scienceSolid solutionAnalytical chemistryAtmospheric temperature rangeengineering.materialExchange anisotropyEnvironmental magnetism; Exchange anisotropy; Hemo-ilmenite; Low-temperature magnetism; Solid solution; Superparamagnetic clustersCrystallographyMagnetizationEnvironmental magnetismGeophysicsExchange biasGeochemistry and PetrologyFerrimagnetismengineeringAntiferromagnetismLow-temperature magnetismIlmeniteSolid solutionSuperparamagnetismGeophysical Journal International
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