Search results for "Condensed Matter::Superconductivity"

showing 10 items of 632 documents

Dimensionality of the Superconductivity in the Transition Metal Pnictide WP

2020

We report theoretical and experimental results on the transition metal pnictide WP. The theoretical outcomes based on tight-binding calculations and density functional theory indicate that WP is a three-dimensional superconductor with an anisotropic electronic structure and nonsymmorphic symmetries. On the other hand, magnetoresistance experimental data and the analysis of superconducting fluctuations of the conductivity in external magnetic field indicate a weakly anisotropic three-dimensional superconducting phase.

TechnologyFOS: Physical sciencesDFTSuperconductivity (cond-mat.supr-con)Condensed Matter - Strongly Correlated ElectronsSuperconducting fluctuationsCondensed Matter::SuperconductivityPnictidesGeneral Materials ScienceMicroscopyQC120-168.85Strongly Correlated Electrons (cond-mat.str-el)MagnetoresistanceCondensed Matter - SuperconductivityTQH201-278.5Nonsymmorphic symmetriesWPTransition metalEngineering (General). Civil engineering (General)TK1-9971Descriptive and experimental mechanicstransition metal; pnictides; WP; pnictide superconductors; superconducting fluctuations; magnetoresistance; DFT; nonsymmorphic symmetriesDFT; Magnetoresistance; Nonsymmorphic symmetries; Pnictide superconductors; Pnictides; Superconducting fluctuations; Transition metal; WPPnictide superconductorsElectrical engineering. Electronics. Nuclear engineeringTA1-2040
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Coulomb blockade thermometry

1996

One dimensional arrays of normal metal tunnel junctions have been found to exhibit properties which are very suitable for primary and secondary thermometry in a lithographically adjustable temperature range which extends over about two decades. The thermometer is remarkably insensitive to nonuniformities in the actual pattern and to even strong magnetic fields. We also discuss the behaviour of this device at very low temperatures where the hot electron effect due to poor electron phonon coupling ultimately takes over and at very high temperatures where the finite tunnel barrier effects appear. Short arrays, and especially single tunnel junctions show interesting deviations from the universa…

Tunnel barrierMaterials scienceCondensed matter physicsCondensed Matter::SuperconductivityThermometerGeneral Physics and AstronomyCoulomb blockadeElectron phonon couplingAtmospheric temperature rangeCondensed Matter::Mesoscopic Systems and Quantum Hall EffectHot-carrier injectionMagnetic fieldCzechoslovak Journal of Physics
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Local tunneling study of three-dimensional order parameter in the pi band of Al-doped MgB2 single crystals

2007

We have performed local tunneling spectroscopy on high quality Mg$_{1-x}$Al$_x$B$_2$ single crystals by means of Variable Temperature Scanning Tunneling Spectroscopy (STS) in magnetic field up to 3 Tesla. Single gap conductance spectra due to c-axis tunneling were extensively measured, probing different amplitudes of the three-dimensional $\Delta_\pi$ as a function of Al content. Temperature and magnetic field dependences of the conductance spectra were studied in S-I-N configuration: the effect of the doping resulted in a monotonous reduction of the locally measured $T_C$ down to 24K for x=0.2. On the other hand, we have found that the gap amplitude shows a maximum value $\Delta_\pi= 2.3$ …

VORTEXSPECTROSCOPYCondensed Matter - SuperconductivitysuperconductivityBORON[PHYS.COND.CM-S]Physics [physics]/Condensed Matter [cond-mat]/Superconductivity [cond-mat.supr-con]Condensed Matter::SuperconductivityDENSITYHIGH-PRESSUREGROWTHSUPERCONDUCTING MGB2MAGNESIUM DIBORIDEScanning Tunneling Spectroscopy; superconductivityScanning Tunneling Spectroscopy
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Superconducting properties of Nb thin films deposited on porous silicon templates

2008

Porous silicon, obtained by electrochemical etching, has been used as a substrate for the growth of nanoperforated Nb thin films. The films, deposited by UHV magnetron sputtering on the porous Si substrates, inherited their structure made of holes of 5 or 10 nm diameter and of 10 to 40 nm spacing, which provide an artificial pinning structure. The superconducting properties were investigated by transport measurements performed in the presence of magnetic field for different film thickness and substrates with different interpore spacing. Perpendicular upper critical fields measurements present peculiar features such as a change in the H_c2(T) curvature and oscillations in the field dependenc…

VORTEXSuperconductivityResistive touchscreenMaterials scienceCondensed matter physicsCondensed Matter - SuperconductivityMAGNETIC-FIELDANODIC ALUMINAGeneral Physics and AstronomyFOS: Physical sciencesSubstrate (electronics)ALUMINA TEMPLATESSputter depositionPorous siliconMagnetic fieldLATTICESuperconductivity (cond-mat.supr-con)Physics and Astronomy (all)Condensed Matter::SuperconductivityThin filmPorosity
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Valence electronic structure of C60: Theoretical analysis of photoemission data

1993

Abstract We present a theoretical investigation of the valence band photoemission spectra of C 60 using the nonempirical valence effective Hamiltonian (VEH) method. The VEH-DOVS curves calculated for the C 60 molecule are found to be in excellent agreement with synchrotron-radiation photoemission spectra reported for C 60 films. A detailed interpretation of all the photoemission bands is performed in the light of the VEH results.

Valence (chemistry)ChemistryMechanical EngineeringInverse photoemission spectroscopyMetals and AlloysAngle-resolved photoemission spectroscopyElectronic structureCondensed Matter PhysicsSpectral lineElectronic Optical and Magnetic MaterialsCondensed Matter::Materials Sciencesymbols.namesakeMechanics of MaterialsCondensed Matter::SuperconductivityMaterials ChemistrysymbolsValence bandMoleculeCondensed Matter::Strongly Correlated ElectronsAtomic physicsHamiltonian (quantum mechanics)Synthetic Metals
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Structural and magnetic properties of the solid solution series Sr2Fe1–xMxReO6(M = Cr, Zn)

2005

Strong correlations between the electronic, structural and magnetic properties have been found during the study of doped double perovskites Sr2Fe1−xMxReO6 (0 ≤ x ≤ 1, M = Zn, Cr). The interplay between the van Hove singularity and the Fermi level plays a crucial role for the magnetic properties. Cr doping of the parent compound Sr2FeReO6 leads to a non-monotonic behaviour of the saturation magnetization and an enhancement for doping levels up to 10%. The Curie temperatures monotonically increase from 401 to 616 K. In contrast, Zn doping leads to a continuous decrease in the saturation magnetization and the Curie temperatures. Superimposed on the electronic effects is the structural influenc…

Valence (chemistry)Condensed matter physicsChemistryFermi levelDopingVan Hove singularityGeneral ChemistryCondensed Matter::Materials Sciencesymbols.namesakeTetragonal crystal systemCondensed Matter::SuperconductivityMössbauer spectroscopyMaterials ChemistrysymbolsCondensed Matter::Strongly Correlated ElectronsSolid solutionPerovskite (structure)Journal of Materials Chemistry
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Creep Modeling with Time-Dependent Damping Parameters in Piezoelectric Actuators

2019

This paper develops a creep model based on the Kelvin-Voigt model with time varying damping parameters. In the piezoelectric actuators, the creep phenomenon is an important issue in precise positioning applications as well as the hysteresis property. It is well-known that the creep effect can be represented by a series connection of a number of Kelvin-Voigt elements as a viscoelastic model. In the motion for the continuous stepwise positioning, however, the creep shape is different for each response. Since the phenomenon can be captured as temporal creep relaxation, time-dependent damping parameters are introduced to improve the reproducibility of the creep for the various motion. On the ot…

VibrationHysteresisNonlinear systemMaterials scienceCreepCondensed Matter::SuperconductivityRelaxation (physics)MechanicsSeries and parallel circuitsPiezoelectricityViscoelasticityPhysics::Geophysics2019 IEEE International Conference on Mechatronics (ICM)
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Study of thermomagnetic energy conversion driven by renewable energy

2017

Magnetic heating, refrigeration and energy conversion have been defined very important challenges for promising environmentally future choices. Recent studies are focused attention on new thermomagnetic systems, devices working through thermomagnetic effect, driven by renewable energies. The aim of this work is a case study presentation of new thermomagnetic energy prototype coupled with renewable technologies or industrial waste heat. The paper is divided into four sections: the first gives a general state of art about magneto-caloric energy conversion systems, the second describes all general thermodynamics and magnetic laws governing the process, the third and fourth sections study in mo…

Work (thermodynamics)Engineeringbusiness.industry020209 energyRefrigerationMechanical engineering02 engineering and technologyThermomagnetic convection021001 nanoscience & nanotechnologyEngineering physicsRenewable energyGeneral stateCondensed Matter::Superconductivity0202 electrical engineering electronic engineering information engineeringEnergy transformationRenewable technologies0210 nano-technologybusinessMagnetic heating2017 IEEE International Conference on Environment and Electrical Engineering and 2017 IEEE Industrial and Commercial Power Systems Europe (EEEIC / I&CPS Europe)
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Spin and charge currents driven by the Higgs mode in high-field superconductors

2020

The Higgs mode in superconducting materials describes slowly decaying oscillations of the order parameter amplitude. We demonstrate that in superconductors with a built-in spin-splitting field the Higgs mode is strongly coupled to the spin degrees of freedom, allowing for the generation of time-dependent spin currents. Converting such spin currents to electric signals by spin-filtering elements provides a tool for the second-harmonic generation and the electrical detection of the Higgs mode generated by the external irradiation. The nonadiabatic spin torques generated by these spin currents allow for the magnetic detection of the Higgs mode by measuring the precession of the magnetic moment…

Work (thermodynamics)suprajohtavuusFerromagnetic superconductors02 engineering and technology01 natural sciencessuprajohteetTunnel junctionsCondensed Matter::SuperconductivitySpin current0103 physical sciencesmagnetismi010306 general physicsSpin-½PhysicsSuperconductivityHiggs bosonsCondensed matter physicsHigh Energy Physics::PhenomenologyDirect observationMode (statistics)Charge (physics)021001 nanoscience & nanotechnologyMultilayer thin filmsspin (kvanttimekaniikka)Higgs bosonCondensed Matter::Strongly Correlated ElectronsHigh field0210 nano-technologyPhysical Review Research
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A high-temperature x-ray absorption spectroscopy study of

1996

We present for the first time a high-temperature x-ray absorption spectroscopy study of at the edge. The analysis both of the XANES and of the EXAFS regions shows that, in , a progressive localization of the 5d states following the temperature rise is accompanied at T > 350 K by a distortion of the octahedra, which increases up to the decomposition temperature . The distortion leads to the lowering of the rhenium site symmetry from and is due to the electron - phonon coupling of the 5d electrons with the and phonons and to the Jahn - Teller effect caused by the rhenium electron which becomes localized at high temperature.

X-ray absorption spectroscopyCondensed matter physicsAbsorption spectroscopyExtended X-ray absorption fine structureJahn–Teller effectchemistry.chemical_elementElectronRheniumCondensed Matter PhysicsMolecular physicsXANESElectron localization functionCondensed Matter::Materials SciencechemistryCondensed Matter::SuperconductivityCondensed Matter::Strongly Correlated ElectronsGeneral Materials ScienceJournal of Physics: Condensed Matter
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