Search results for "UAS"

showing 10 items of 1619 documents

Notes on the use of rhetoric in t.v. advertising

1989

We intend to reflect on the use of Rhetoric in t.v. advertising starting from the survey of several spots given off by T.V.E. Therefore, we fix the structural organization of advertisements. Afterwards we study the rhetoric of spot in the sound and in the picture and, mainly, ¡n the conjunction of both bands; in this sense spots are normally based on a rhetorical figure that involves both bands. Our observations set up an essentially metaphoric basis to the construction of publicity message. We infer that advertising works with connotative signs, where the assembly of picture and sound tracks becomes the significant of metaphoric meaning that is insinuated.

Structural organizationPersuasió (Retòrica)media_common.quotation_subjectLenguaje publicitarioAdvertisingArtPublicidadPublicitatConjunction (grammar)RetòricaTelevisiónRhetoricRhetorical questionAnunciospublicitatHumanitiesPublicityRetóricamedia_commonMeaning (linguistics)
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Forced oscillations in a self-oscillating surface reaction model

2004

A microscopic lattice gas model for the catalytic CO + O2 reaction on Pt(110) subject to external periodic forcing is studied by means of cellular automaton simulations. Harmonic resonance, subharmonic and superharmonic entrainment, quasiperiodic as well as chaotic behavior are among the observed phenomena in this model when the gas phase concentration of CO as an external control parameter is periodically varied and interacts with the self-oscillating reaction system.

Subharmonic functionCondensed matter physicsOscillationChemistryQuasiperiodic functionLattice (order)ChaoticGeneral Physics and AstronomyMechanicsPhysical and Theoretical ChemistryEntrainment (chronobiology)Cellular automatonBriggs–Rauscher reactionPhys. Chem. Chem. Phys.
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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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Microrefrigeration by quasiparticle tunnelling in NIS and SIS junctions

2000

Abstract A solid-state refrigeration method at sub-kelvin temperatures has been developed. It is based on quasiparticle tunnelling between a superconductor and a normal metal, or, between two dissimilar superconducting metals. The refrigerator is fabricated by combining nanolithography and micromachining methods. This technique has been demonstrated in both electron cooling from 0.3 to 0.1 K and in refrigeration of a dielectric platform. We describe a new fabrication method of tunnel junctions in a shadow evaporation configuration using a mechanical mask of silicon nitride.

SuperconductivityMaterials scienceCondensed matter physicsPhysics::Instrumentation and DetectorsPhysics::OpticsDielectricCondensed Matter PhysicsElectronic Optical and Magnetic Materialslaw.inventionComputer Science::OtherSurface micromachiningchemistry.chemical_compoundNanolithographySilicon nitridechemistrylawCondensed Matter::SuperconductivityQuasiparticleElectrical and Electronic EngineeringQuantum tunnellingElectron cooling
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Cooling of a superconductor by quasiparticle tunneling

1999

We have extended the cryogenic cooling method based on tunneling between a superconductor and another metal to the case when both metals are superconducting but when their energy gaps are different; earlier, this method was applied between a superconductor and a normal metal. The electron system of a titanium strip with the superconducting transition temperature Tc2=0.51 K has been cooled from 1.02Tc2 to below 0.7Tc2 by this method, using aluminum as the other superconductor.

SuperconductivityMaterials scienceFlux pinningFlux pumpingPhysics and Astronomy (miscellaneous)Condensed matter physicsCondensed Matter::SuperconductivityType-I superconductorQuasiparticleSuperconducting magnetic energy storageTechnological applications of superconductivityQuantum tunnelling
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Trapping of quasiparticles of a nonequilibrium superconductor

2000

We have performed experiments where hot electrons are extracted from a normal metal into a superconductor through a tunnel junction. We have measured the cooling performance of such NIS junctions, especially in the cases where another normal metal electrode, a quasiparticle trap, is attached to the superconductor at different distances from the junction in direct metal-to-metal contact or through an oxide barrier. The direct contact at a submicron distance allows superior thermalization of the superconductor. We have analyzed theoretically the heat transport in this system. From both experiment and theory, it appears that NIS junctions can be used as refrigerators at low temperatures only w…

SuperconductivityMaterials sciencePhysics and Astronomy (miscellaneous)Condensed matter physicsOxideNon-equilibrium thermodynamicsCryogenicsTrappingCondensed Matter::Mesoscopic Systems and Quantum Hall Effectchemistry.chemical_compoundThermalisationchemistryTunnel junctionCondensed Matter::SuperconductivityQuasiparticleCondensed Matter::Strongly Correlated ElectronsApplied Physics Letters
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Efficient electronic cooling in heavily doped silicon by quasiparticle tunneling

2001

Cooling of electrons in a heavily doped silicon by quasiparticle tunneling using a superconductor–semiconductor–superconductor double-Schottky-junction structure is demonstrated at low temperatures. In this work, we use Al as the superconductor and thin silicon-on-insulator (SOI) film as the semiconductor. The electron–phonon coupling is measured for the SOI film and the low value of the coupling is shown to be the origin of the observed significant cooling effect.

SuperconductivityMaterials sciencePhysics and Astronomy (miscellaneous)Condensed matter physicsSiliconPhysics::Instrumentation and Detectorsbusiness.industrySchottky effectDopingchemistry.chemical_elementSilicon on insulatorCondensed Matter::Mesoscopic Systems and Quantum Hall EffectCondensed Matter::Materials ScienceSemiconductorchemistryCondensed Matter::SuperconductivityQuasiparticleCondensed Matter::Strongly Correlated ElectronsbusinessQuantum tunnellingApplied Physics Letters
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Proximity-induced Josephson-quasiparticle process in a single-electron transistor

1998

We have performed the first experiments in a superconductor - normal metal - superconductor single electron transistor in which there is an extra superconducting strip partially overlapping the normal metal island in good metal-to-metal contact. Superconducting proximity effect gives rise to current peaks at voltages below the quasiparticle threshold. We interpret these peaks in terms of the Josephson-quasiparticle process and discuss their connection with the proximity induced energy gap in the normal metal island.

SuperconductivityPhysicsCondensed Matter - Mesoscale and Nanoscale PhysicsCondensed matter physicsBand gapCondensed Matter - SuperconductivityTransistorFOS: Physical sciencesCoulomb blockadeCondensed Matter::Mesoscopic Systems and Quantum Hall Effectlaw.inventionSuperconductivity (cond-mat.supr-con)lawCondensed Matter::SuperconductivityMesoscale and Nanoscale Physics (cond-mat.mes-hall)Proximity effect (superconductivity)QuasiparticleCondensed Matter::Strongly Correlated ElectronsQuantum tunnellingVoltagePhysical Review B
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Interference of nonequilibrium quasiparticles in a superconductor

2003

Abstract We have observed an interference of nonequilibrium quasiparticles, injected from a copper electrode into an aluminium loop through a tunnel barrier. At temperatures below 1K the tunnel current at fixed voltage bias is periodically modulated by external magnetic field. The amplitude of the modulation reaches maximum at a bias slightly below the gap energy, and decreases with the further increase of the bias voltage. For a given voltage bias the amplitude of the current oscillations decreases with increase of the temperature and the loop circumference.

SuperconductivityPhysicsCondensed matter physicsBiasingCondensed Matter::Mesoscopic Systems and Quantum Hall EffectCondensed Matter PhysicsInterference (wave propagation)Electronic Optical and Magnetic MaterialsMagnetic fieldAmplitudeCondensed Matter::SuperconductivityQuasiparticleElectrical and Electronic EngineeringCurrent (fluid)VoltagePhysica B: Condensed Matter
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Electron–phonon coupling in degenerate silicon-on-insulator film probed using superconducting Schottky junctions

2002

Abstract Energy flow rate in degenerate n-type silicon-on-insulator (SOI) film is studied at low temperatures. The electrons are heated above the lattice temperature by electric field and the electron temperature is measured via semiconductor–superconductor quasiparticle tunneling. The energy flow rate in the system is found to be proportional to T 5 , indicating that electron–phonon relaxation rate and electron–phonon phase breaking rate are proportional to T 3 . The electron–phonon system in the SOI film is in the “dirty limit” where the electron mean free path is smaller than the inverse of the thermal phonon wave vector.

SuperconductivityPhysicsCondensed matter physicsPhononsuperconductivityelectron phonon couplingelectron energy relaxationElectronCondensed Matter::Mesoscopic Systems and Quantum Hall EffectCondensed Matter PhysicsAtomic and Molecular Physics and OpticsElectronic Optical and Magnetic Materialssilicon-on-insulatorCondensed Matter::Materials ScienceCondensed Matter::SuperconductivityElectric fieldQuasiparticleElectron temperatureCondensed Matter::Strongly Correlated ElectronsWave vectorQuantum tunnellingPhysica E: Low-dimensional Systems and Nanostructures
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