Search results for "Condensed Matter::Superconductivity"

showing 10 items of 632 documents

Lattice dynamics of the fluoride scheelite CaZnF4

2000

The lattice dynamics of the fluoride scheelite CaZnF4 have been investigated by means of infrared reflectivity and Raman scattering. The measured phonon modes have been assigned to the various irreducible representations of the point group of the crystal. The phonon dispersion curves, density of states and sound velocities have been calculated within a rigid-ion model based on experimental zone-centre phonons.

Condensed matter physicsChemistrybusiness.industryPhononCondensed Matter PhysicsPoint groupCrystalCondensed Matter::Materials Sciencechemistry.chemical_compoundsymbols.namesakeOpticsCondensed Matter::SuperconductivityScheeliteDispersion (optics)symbolsDensity of statesGeneral Materials SciencebusinessFluorideRaman scatteringJournal of Physics: Condensed Matter
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Raman scattering study of the anharmonic effects in CeO2−ynanocrystals

2007

We have studied the temperature dependence of the F2g Raman mode phonon frequency and broadening in CeO2−y nanocrystals. The phonon softening and phonon linewidth are calculated using a model which takes into account the three-and four-phonon anharmonic processes. A detailed comparison of the experimental data with theoretical calculations revealed the predominance of four-phonon anharmonic processes in the temperature dependence of the phonon energy and broadening of the nanocrystals. On the other hand, three-phonon processes dominate the temperature behavior of phonons in polycrystalline samples. The anti-Stokes/Stokes peak intensity ratio was also investigated and found to be smaller for…

Condensed matter physicsPhononChemistryAnharmonicitySoft modesCondensed Matter::Mesoscopic Systems and Quantum Hall EffectCondensed Matter PhysicsCondensed Matter::Materials Sciencesymbols.namesakeLaser linewidthNanocrystalCondensed Matter::SuperconductivitysymbolsCondensed Matter::Strongly Correlated ElectronsGeneral Materials ScienceCrystalliteRaman spectroscopyRaman scatteringJournal of Physics: Condensed Matter
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Vibrational properties of ZnTe at high pressures

2002

Raman spectra of ZnTe were measured under hydrostatic pressures up to 15 GPa at T = 300 K. Results for the frequencies of first- and second-order Raman features of the zincblende phase (0-9.5 GPa) are used to set up a rigid-ion model of the phonon dispersion relations under pressure. Calculated phonon densities of states, mode Gruneisen parameters and the thermal expansion coefficient as a function of pressure are discussed. The effect of pressure on the widths and intensities of Raman spectral features is considered. Raman spectra of high-pressure phases of ZnTe are reported. These spectra indicate the possible existence of a new phase near 13 GPa, intermediate between the cinnabar and ort…

Condensed matter physicsPhononChemistryHydrostatic pressureCondensed Matter PhysicsThermal expansionCondensed Matter::Materials Sciencesymbols.namesakeCondensed Matter::SuperconductivityMolecular vibrationDispersion relationPhase (matter)symbolsGeneral Materials ScienceOrthorhombic crystal systemRaman spectroscopyJournal of Physics: Condensed Matter
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First-principles phonon calculations of Fe4+impurity in SrTiO3

2012

The results of hybrid density functional theory calculations on phonons in Sr(Fe(x)Ti(1-x))O(3) solid solution within the formalism of a linear combination of atomic orbitals are presented. The phonon density of states (DOS) calculated for 6.25% Fe(4+) impurities is reported and defect-induced phonon modes are identified. Based on our calculations and group-theoretical analysis, we suggest for the first time an interpretation of experimentally observed Raman- and IR-active modes.

Condensed matter physicsPhononChemistryPhonon density of statesCondensed Matter PhysicsFormalism (philosophy of mathematics)symbols.namesakeImpurityLinear combination of atomic orbitalsCondensed Matter::SuperconductivitysymbolsGeneral Materials ScienceDensity functional theoryRaman spectroscopySolid solutionJournal of Physics: Condensed Matter
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Entanglement generation between two spin-s magnetic impurities in a solid via electron scattering

2009

Abstract We present a scheme for generating entanglement between two magnetic impurities in a solid-state system via electron scattering. The scheme applies to impurities of arbitrary quantum spin number. We show that resonance conditions yield generation of a maximally entangled state of the impurities' spins, regardless of the value of the electron–impurity coupling constant and the impurity spin quantum number. The mechanism behind the scheme is explained in terms of resonance-induced selection rules.

Coupling constantPhysicsCondensed matter physicsquantum information theory transport in mesoscopic systemsSpin engineeringGeneral ChemistryQuantum entanglementCondensed Matter::Mesoscopic Systems and Quantum Hall EffectCondensed Matter PhysicsQuantum numberSpin quantum numberCondensed Matter::SuperconductivityQubitCondensed Matter::Strongly Correlated ElectronsGeneral Materials ScienceQuantum informationSpin (physics)
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Microscopic quasiparticle–phonon description of beta decays of 113Cd and 115In using proton–neutron phonons

2007

Abstract The fourth-forbidden non-unique ground-state-to-ground-state beta decays of 113 Cd and 115 In are calculated using a realistic microscopic two-body interaction and a realistic single-particle model space. To describe the involved initial and final nuclear states we introduce a proton–neutron variant of the microscopic quasiparticle–phonon model (MQPM), the proton–neutron MQPM (pnMQPM). The states of the pnMQPM are created by coupling quasiparticles with phonons of the proton–neutron quasiparticle random-phase approximation (pnQRPA). The computed half-lives and log f t values are found to be in excellent agreement with experimental data. Computed beta spectra of the decays are also …

CouplingPhysicsNuclear and High Energy PhysicsProtonPhononNuclear TheorySpace (mathematics)Spectral lineNuclear physicsCondensed Matter::SuperconductivityBeta (plasma physics)QuasiparticleNeutronNuclear ExperimentPhysics Letters B
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Crystal Fields in PrX3 (X=In, Tl, Pb, Sn) Intermetallic Compounds with Cu3Au Structure

1977

We have determined the crystal field splittings of Pr3+ in PrIn3, PrTl3, PrPb3, and PrSn3 by inelastic neutron scattering. The values of the deduced crystal field parameters are found to depend strongly on the constituent X, though all systems have nonmagnetic ground-states. The line widths in the different systems are compared.

CrystalMaterials scienceField (physics)Crystal field theoryCondensed Matter::SuperconductivityIntermetallicAnalytical chemistryLine widthInelastic neutron scatteringLine (formation)
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On melting of two-dimensional monolayer films

1996

The melting of two-dimensional films formed on the (100) fcc crystal is studied by Monte Carlo simulation. The results obtained suggest that in systems with only weakly corrugated surface potential, exhibiting the hexagonal close packed solid structure, the melting transition is followed by the lsing-like transition as predicted by the theory of Nelson and Halperin. In the case of highly corrugated surface potential, the film forms registered structure which disorders gradually as the temperature is raised.

CrystalSurface (mathematics)Materials scienceSolid structureCondensed matter physicsCondensed Matter::SuperconductivityMonte Carlo methodMonolayerClose-packing of equal spheresGeneral Physics and Astronomy
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Nondiverging vortex pinning barriers at low current densities across the putative elastic vortex-glass–vortex-liquid transition inYBa2Cu3O7−δfilms

2001

A detailed analysis of the electric field--current density $(E\ensuremath{-}J)$ characteristics of ${\mathrm{YBa}}_{2}{\mathrm{Cu}}_{3}{\mathrm{O}}_{7\ensuremath{-}\ensuremath{\delta}}$ films across the putative thermally induced elastic vortex-glass--vortex-liquid transition predicted by the $E(J)$ curve scaling reveals that the expected increase of the collective pinning barriers with decreasing J is cut off in the low-$J$ region, signaling a dissipation process which involves the plastic deformation of the vortex system. The temperature and magnetic field dependence of the pinning barriers at low J does not change across the scaling-predicted glass transition line. For the investigated m…

Current (mathematics)Materials scienceCondensed matter physicsCondensed Matter::SuperconductivityGlass transitionPinning forceScalingVortexMagnetic fieldLine (formation)Physical Review B
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Switching times in long-overlap Josephson junctions subject to thermal fluctuations and non-Gaussian noise sources

2014

We investigate the superconducting lifetime of long current-biased Josephson junctions, in the presence of Gaussian and non-Gaussian noise sources. In particular, we analyze the dynamics of a Josephson junction as a function of the noise signal intensity, for different values of the parameters of the system and external driving currents. We find that the mean lifetime of the superconductive state is characterized by nonmonotonic behavior as a function of noise intensity, driving frequency and junction length. We observe that these nonmonotonic behaviours are connected with the dynamics of the junction phase string during the switching towards the resistive state. An important role is played…

DYNAMICSJosephson effectKRAMERS PROBLEMPhase (waves)Thermal fluctuationsFOS: Physical sciencesNoise processes and phenomenaSettore FIS/03 - Fisica Della MateriaPi Josephson junctionSuperconductivity (cond-mat.supr-con)symbols.namesakeLEVY FLIGHTSCALING LAWSCondensed Matter::SuperconductivityMesoscale and Nanoscale Physics (cond-mat.mes-hall)Stochastic analysis methodFluctuation phenomenaANOMALOUS DIFFUSIONENHANCED STABILITYSuperconductivityPhysicsRESONANT ACTIVATIONCondensed Matter - Mesoscale and Nanoscale PhysicsCondensed matter physicsNoise (signal processing)Condensed Matter - SuperconductivityBiasingJosephson deviceCondensed Matter PhysicsElectronic Optical and Magnetic MaterialsZERO-VOLTAGE STATEGaussian noisesymbolsZERO-VOLTAGE STATE; ALPHA-STABLE NOISE; RESONANT ACTIVATION; LEVY FLIGHT; ANOMALOUS DIFFUSION; ENHANCED STABILITY; KRAMERS PROBLEM; SCALING LAWS; DYNAMICS; BEHAVIORALPHA-STABLE NOISEBEHAVIOR
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