Search results for "Condensed Matter::Superconductivity"

showing 10 items of 632 documents

Size dependence of the Josephson critical behavior in pyrolytic graphite TEM lamellae

2014

We have studied the transport characteristics of TEM lamellae of different widths obtained from a graphite sample with electrical contacts at the edges of the embedded interfaces. The temperature dependence of the resistance, as well as the current-voltage characteristics, are compatible with the existence of Josephson-coupled superconducting regions. The transition temperature at which the Josephson behavior sets in decreases with a decreasing interface width and vanishes for widths below 200 nm. This interface-size dependence provides an explanation for differences observed in the transport behavior of graphite-based samples with interfaces, and it appears to be related to the influence o…

SuperconductivityMaterials scienceCondensed matter physicsTransition temperatureMetals and AlloysCondensed Matter PhysicsElectrical contactsWeak localizationCondensed Matter::SuperconductivitySuperconducting critical temperatureMaterials ChemistryCeramics and CompositesGraphitePyrolytic carbonElectrical and Electronic EngineeringSize dependenceSuperconductor Science and Technology
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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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Application of superconductor-semiconductor Schottky barrier for electron cooling

2003

Abstract Electronic cooling in superconductor–semiconductor–superconductor structures at sub kelvin temperatures has been demonstrated. Effect of the carrier concentration in the semiconductor on performance of the micro-cooler has been investigated.

SuperconductivityMaterials scienceCondensed matter physicscoolingbusiness.industryCondensed Matter::Otherelectronic coolingsuperconductor-semiconductor junctionSchottky barriermicrocoolerssuperconductivityCondensed Matter PhysicsMetal–semiconductor junctionCondensed Matter::Mesoscopic Systems and Quantum Hall EffectElectronic Optical and Magnetic Materialslaw.inventionCondensed Matter::Materials ScienceSemiconductorlawCondensed Matter::SuperconductivityElectrical and Electronic EngineeringbusinessSchottky barrierElectron coolingPhysica B: Condensed Matter
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Superconductivity suppression in Fe-implanted thin Al films

2005

At present, ion implantation into metallic systems is given increasing attention, aiming at achieving properties and functionalities of technologically valuable materials not easily available via conventional techniques. In our experiments thin Al films were implanted with Fe ions in order to find out how the superconductive properties of the metal can be modified at will. The purpose was twofold, viz., first, to study the basic physics of superconductivity in low-dimensional metallic structures doped with impurities. The second purpose was to apply ion implantation for the suppression of undesired superconductivity in aluminum widely used for fabrication of micro- and nanodevices operated …

SuperconductivityMaterials scienceFabricationCondensed matter physicsbusiness.industryDopingGeneral Physics and Astronomychemistry.chemical_elementMetalIon implantationchemistryImpurityAluminiumCondensed Matter::Superconductivityvisual_artvisual_art.visual_art_mediumCoulombOptoelectronicsbusinessJournal of Applied Physics
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Fabrication of Quasi-One-Dimensional Superconducting Micro- and Nanostructures

2007

Wires capable of conducting electric current are basic blocks of all electronic applications. Of particular interest for nanoelectronics are superconducting elements taking advantage of the superconductor's macroscopic quantum coherence and zero resistance. Recently there appeared indications that due to quantum fluctuations the dissipationless electric current (supercurrent) can be suppressed in ultra-narrow superconducting channels with the effective diameter below approximately 10 nm. In this Review we will describe methods of fabrication of quasi-one-dimensional superconducting micro- and nanowires suitable for electric transport measurements at cryogenic temperatures. In the first sect…

SuperconductivityMaterials scienceFabricationNanowiresbusiness.industrySupercurrentElectric ConductivityGeneral EngineeringNanowireCondensed Matter PhysicsNanostructuresNanoelectronicsCondensed Matter::SuperconductivityOptoelectronicsGeneral Materials ScienceElectric currentbusinessQuantum fluctuationCoherence (physics)Recent Patents on Nanotechnology
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Vortex motion in Nb/PdNi/Nb trilayers: new aspects in the flux flow state

2011

We study the dynamics of vortex lines in Supercondutor/Ferromagnet/Superconductor (SFS) heterostructures at microwave frequencies. We have employed swept-frequency, Corbino-disk and resonant, dielectric-resonator techniques to obtain the field and temperature dependence of the vortex-state parameters. We concentrate here on the genuine flux-flow resistivity $\rho_{ff}$, that we access at subcritical currents using a sufficiently high driving frequency. We find that $\rho_{ff}$ does not follow the well-known Bardeen-Stephen model. Instead, it is well described by a full time-dependent Ginzburg-Landau expression at very thin F layer thickness, but changes to a previously unreported field-depe…

SuperconductivityMaterials scienceField (physics)Condensed matter physicsCondensed Matter - SuperconductivityEnergy Engineering and Power TechnologyFOS: Physical sciencesDielectric resonatorVorticityCondensed Matter PhysicsCondensed Matter::Mesoscopic Systems and Quantum Hall EffectElectronic Optical and Magnetic MaterialsVortexSuperconductivity (cond-mat.supr-con)FerromagnetismElectrical resistivity and conductivityCondensed Matter::SuperconductivityElectrical and Electronic Engineeringsuperconductors; nb; mixed state; s/f hybrids; dielectric resonator; resistance; vortex dynamics; surface impedance; corbino disk; vortices; temperatureMicrowave
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Shift of the surface-barrier part of the irreversibility line due to columnar defects in Bi2Sr2CaCu2O8 thin films

2003

We report the results of studying the influence of the uranium-ion irradiation of the Bi_2Sr_2CaCu_2O_8 thin films on the high-temperature part (close to critical temperature) of their irreversibility line. We studied irreversible properties of the films by measuring the hysteresis of nonresonant microwave absorption. The results have revealed the shift of irreversibility line towards low temperatures and magnetic fields. The effect is most significant for the films irradiated with large doses, more than 1T. This fact is in good agreement with the theoretical prediction by Koshelev and Vinokur of suppression of surface barrier by columnar defects.

SuperconductivityMaterials scienceFlux pinningCondensed matter physicsCondensed Matter - SuperconductivityFOS: Physical sciencesEnergy Engineering and Power TechnologyCondensed Matter PhysicsElectronic Optical and Magnetic MaterialsMagnetic fieldSuperconductivity (cond-mat.supr-con)HysteresisCondensed Matter::SuperconductivityCuprateIrradiationElectrical and Electronic EngineeringThin filmType-II superconductorPhysica C: Superconductivity
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Origin of the fast magnetization relaxation at low temperatures in HTS with strong pinning

2010

The temperature T variation of the normalized magnetization relaxation rate S in high-temperature superconductors (HTS) with strong vortex pinning exhibits a maximum in the low-T range. This was reported for various HTS, and the origin of the faster relaxation at low T appearing in standard magnetization relaxation measurements was usually related to specific pinning properties of the investigated specimens. Since the observed behaviour seems to be characteristic to all HTS with enhanced pinning (generated by random and/or correlated disorder), we show that the S(T) maximum can be explained in terms of classic collective vortex creep. The influence of thermo-magnetic instabilities in the lo…

SuperconductivityMaterials scienceFlux pinningCondensed matter physicsRelaxation (NMR)Energy Engineering and Power TechnologyCondensed Matter PhysicsInstabilityElectronic Optical and Magnetic MaterialsVortexMagnetizationCreepCondensed Matter::SuperconductivityElectrical and Electronic EngineeringPinning forcePhysica C: Superconductivity and its Applications
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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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On the determination of vortex creep parameters in superconductors using standard magnetization relaxation data

2011

The relaxation of the irreversible magnetic moment m(t) in YBa2Cu3O7 (YBCO) films was investigated as a function of temperature T and the external magnetic field H along the c axis applied in zero-field cooling conditions, for the determination of vortex creep parameters. The data analysis was performed using the T and current density dependence of the normalized vortex creep activation energy, or by the fit of the m(t) data with the well known interpolation formula in the framework of the general vortex creep equation. It was found that (i) even for specimens with strong static pinning the characteristic pinning energy remains small in the low-T range, where the vortex creep appearing in s…

SuperconductivityMaterials scienceMagnetic momentCondensed matter physicsRelaxation (NMR)Metals and AlloysCondensed Matter PhysicsPhysics::GeophysicsMagnetic fieldVortexMagnetizationCreepCondensed Matter::SuperconductivityMaterials ChemistryCeramics and CompositesElectrical and Electronic EngineeringCurrent densitySuperconductor Science and Technology
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