Search results for "Condensed Matter::Superconductivity"

showing 10 items of 632 documents

"Table 1" of "A Precise Determination of the Number of Families With Light Neutrinos and of the $Z$ Boson Partial Widths"

1990

Penetrating charged particle track selection.

Condensed Matter::SuperconductivityE+ E- --> HADRONSE+ E- --> Z0E+ E- ScatteringIntegrated Cross Section88.278-95.036ExclusiveCross SectionR measurementSIG
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Nanosecond voltage pulses from dendritic flux avalanches in superconducting NbN films

2013

Combined voltage and magneto-optical study of magnetic flux flow in superconducting NbN films is reported. The nanosecond-scale voltage pulses appearing during thermomagnetic avalanches have been recorded in films partially coated by a metal layer. Simultaneous magneto-optical imaging and voltage measurements allowed the pulses to be associated with individual flux branches penetrating the superconductor below the metal coating. From detailed characteristics of pulse and flux branches, the electrical field in the superconductor is found to be in the range of 5-50 kV/m, while the propagation speed of the avalanche during its final stage is found to be close to 5 km/s. peerReviewed

Condensed Matter::SuperconductivityExperimental materials physics
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Pac-Man Josephson junctions: useful trigonometric puzzles?

2021

Abstract Rather interesting trigonometric equations arise when considering a Josephson junction obtained by embedding a Pac-Man shaped superconducting island in between two superconducting electrodes. In the present work we unfold these equations, written in terms of the superconducting phase difference between the two electrodes, and find the current-phase relation and the maximum superconducting current of the Josephson junction network. The solution of the trigonometric equations defining the superconducting current state of the system can be proposed to advanced high-school students or to undergraduate students in an interdisciplinary lecture.

Condensed Matter::SuperconductivityPhysics::Physics Education
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Локальные и интегральные свойства квазиодномерного сверхпроводника в режиме квантовых флуктуаций параметра порядка

2021

Utilization of superconducting materials for the new generation of nanoelectronic devices seems extremely tempting from the point of view of the absence of Joule heating. However, in small systems, the role of fluctuations can be very significant. In this work, the transport properties of thin superconducting titanium nanostructures were studied experimentally and theoretically. It has been shown that quantum fluctuations of the order parameter have a dif-ferent impact on integral and local characteristics of a quasi-one-dimensional superconductor. In sufficiently thin nanowires, a finite electrical resistance can be observed at the lowest tem-peratures, while the tunneling current-voltage…

Condensed Matter::SuperconductivitySurfaces and InterfacesФизика твердого тела
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Сверхпроводящие микроструктуры с высоким импедансом

2020

Abstract The transport properties of two types of quasi-one-dimensional superconducting microstructures were investigated at ultra-low temperatures: the narrow channels close-packed in the shape of meander, and the chains of tunneling contacts “superconductor-insulator-superconductor.” Both types of the microstructures demonstrated high value of high-frequency impedance and-or the dynamic resistance. The study opens up potential for using of such structures as current stabilizing elements with zero dissipation.

Condensed Matter::SuperconductivitySurfaces and InterfacesФизика твердого тела
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Change of the vortex core structure in two-band superconductors at the impurity-scattering-driven s±/s++ crossover

2017

We report a nontrivial transition in the core structure of vortices in two-band superconductors as a function of interband impurity scattering. We demonstrate that, in addition to singular zeros of the order parameter, the vortices there can acquire a circular nodal line around the singular point in one of the superconducting components. It results in the formation of the peculiar “moat”-like profile in one of the superconducting gaps. The moat-core vortices occur generically in the vicinity of the impurity-induced crossover between s± and s++ states. peerReviewed

Condensed Matter::Superconductivityimpurities in superconductorsmultiband superconductivityvortices in superconductorss-wave
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Phase diagram of dirty two-band superconductors and observability of impurity-induced s + i s state

2017

We investigate the phase diagram of dirty two-band superconductors. This paper primarily focuses on the properties and observability of the time-reversal symmetry-breaking s + is superconducting states, which can be generated in two-band superconductors by interband impurity scattering. We show that such states can appear in two distinct ways. First, according to a previously discussed scenario, the s + is state can form as an intermediate phase at the impurity-driven crossover between s± and s++ states. We show that there is a second scenario where domains of the s + is state exists in the form of an isolated dome inside the s± domain, completely detached from the transition between s± and…

Condensed Matter::Superconductivityphase diagramssuprajohteet
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Effects of water dielectric saturation on the space–charge junction of a fixed-charge bipolar membrane

2000

Abstract The dielectric saturation at the space–charge junction of a fixed-charge bipolar membrane is studied using the theoretical approach by Booth for the water dielectric constant and the Poisson equation for the electrical double layer at the junction. The numerical solution gives the electric field and dielectric constant profiles through the junction as well as the junction thickness as a function of the voltage drop. The water dielectric constant decreases substantially for the large electric fields that may occur at the narrow bipolar junction.

Condensed matter physicsChemistryGate dielectricAnalytical chemistryPhysics::OpticsGeneral Physics and AstronomyDielectricCondensed Matter::Mesoscopic Systems and Quantum Hall EffectSpace chargePolarization densityCondensed Matter::SuperconductivityElectric fieldPhysical and Theoretical ChemistryPoisson's equationSaturation (magnetic)Voltage dropChemical Physics Letters
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Valence band photoemission from thin iron films - A comparison of experimental and theoretical results

1998

Abstract In this contribution, we report on photoemission data from thin iron films on W(110) that have been carried out by means of spin-resolved photoelectron spectroscopy as well as Magnetic Circular Dichroism in valence band photoemission at the storage ring BESSY. These techniques give complementary information on the electronic and magnetic properties, such as exchange and spin–orbit splitting. We compare our experimental data to new photoemission calculations, which have been obtained in the framework of a fully relativistic one-step theory for ferromagnetic materials.

Condensed matter physicsChemistryMagnetic circular dichroismInverse photoemission spectroscopyAnalytical chemistryAngle-resolved photoemission spectroscopySurfaces and InterfacesCondensed Matter PhysicsSurfaces Coatings and FilmsCondensed Matter::Materials ScienceTransition metalX-ray photoelectron spectroscopyFerromagnetismCondensed Matter::SuperconductivityMaterials ChemistryCondensed Matter::Strongly Correlated ElectronsThin filmStorage ring
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Anomalies in low-temperature lattice parameters of ErFeO3 and ErAlO3 single crystals: correlation with magnetic properties

2005

Abstract The paper presents the results of an experimental study of thermal expansion of isostructural orthorhombic ErFeO3 and ErAlO3 single crystals. Changes of lattice parameters have been investigated by X-ray measurements in the 10–300 K temperature range. Above ∼150 K, experimental results correspond well to the phonon mechanism. At low temperatures distinct anisotropic anomalies were observed in both compounds; and a correlation with the magnetic properties of the relevant ions is noted.

Condensed matter physicsChemistryPhononGeneral ChemistryAtmospheric temperature rangeCondensed Matter PhysicsThermal expansionIonCondensed Matter::SuperconductivityLattice (order)Materials ChemistryCondensed Matter::Strongly Correlated ElectronsOrthorhombic crystal systemIsostructuralAnisotropySolid State Communications
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