Search results for "Condensed Matter::Strongly Correlated Electrons"

showing 10 items of 888 documents

The difference of crystal fields in ErAl2 and La0.9Er0.1Al2

1978

Abstract Inelastic neutron scattering experiments have been carried out on polycrystalline ErAl2 and on the related pseudobinary compound La0.9Er0.1Al2 in the paramagnetic phase. For ErAl2 the parameters of the cubic crystal field could uniquely be determined as x=+0.16 and W=−0.030 meV. The results on the dilute sample are different from this and are thought to be due effective charges of Er and La being not equivalent.

Materials scienceCondensed matter physicsField (physics)General ChemistryCubic crystal systemCondensed Matter PhysicsInelastic neutron scatteringCrystalCondensed Matter::Materials ScienceCrystallographyParamagnetismPhase (matter)Materials ChemistryHigh Energy Physics::ExperimentCondensed Matter::Strongly Correlated ElectronsCrystalliteSolid State Communications
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Mechanism for ultrafast electric-field driven skyrmion nucleation

2021

We show how a Dzyaloshinskii-Moriya interaction can be generated in an ultrathin metal film from a femtosecond pulse in electric field. This interaction does not require structural inversion-symmetry breaking, and its amplitude can be tuned depending on the amplitude of the field. We perform first-principles calculations to estimate the strength of the field-induced magnetoelectric coupling for ferromagnetic Fe, Co, and Ni, and antiferromagnetic Mn, as well as FePt and MnPt alloys. Last, using atomistic simulations, we demonstrate how an isolated antiferromagnetic skyrmion can be coherently nucleated from the collinear background by an ultrashort pulse in electric field on a hundred-femtose…

Materials scienceCondensed matter physicsField (physics)SkyrmionNucleationPhysics::Optics02 engineering and technologyPhysik (inkl. Astronomie)021001 nanoscience & nanotechnology7. Clean energy01 natural sciencesCondensed Matter::Materials ScienceAmplitudeFerromagnetismElectric field0103 physical sciencesAntiferromagnetismddc:530Condensed Matter::Strongly Correlated Electrons010306 general physics0210 nano-technologyUltrashort pulsePhysical Review B
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An Ising ferromagnet with an antiferromagnetic surface layer: A simple model for magnetic surface reconstruction

1985

Simple cubic Ising lattices are studied by Monte Carlo simulation, using a thin film geometry (usually 40 atomic layers thick), with nearest neighbour ferromagnetic exchange J in the bulk and nearest neighbour antiferromagnetic interaction Js between surface spins. Applying a technique of preferential sampling in the surface layers, we investigate the ordering for a variety of values of JsJ and for various temperatures. For JsAF < Js < − 0.25J (where JsAF ≈ − 2.01J) ferromagnetic ordering occurs at a higher temperature than the antiferromagnetic surface ordering, while for − 0.25J < Js no antiferromagnetic long range order is possible. For Js < JsAF the surface transition occurs at a higher…

Materials scienceCondensed matter physicsHeisenberg modelMulticritical pointSurfaces and InterfacesCondensed Matter PhysicsSurfaces Coatings and FilmsMagnetizationFerromagnetismMaterials ChemistryAntiferromagnetismCondensed Matter::Strongly Correlated ElectronsIsing modelSurface layerSurface reconstructionSurface Science
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A neutron scattering study of the magnetic properties of PrSn3

1988

The intermetallic compound PrSn3 has been studied by elastic and inelastic neutron scattering. The paramagnetic phase shows overdamped crystal field excitations and an anisotropic distribution of the diffuse magnetic intensity. The dispersion relation of the excitations of the antiferromagnetic phase has been determined. The results are analyzed in terms of an anisotropic exchange coupling.

Materials scienceCondensed matter physicsIntermetallicNeutron scatteringCondensed Matter PhysicsSmall-angle neutron scatteringInelastic neutron scatteringElectronic Optical and Magnetic MaterialsParamagnetismDispersion relationAntiferromagnetismCondensed Matter::Strongly Correlated ElectronsGeneral Materials ScienceAnisotropyZeitschrift f�r Physik B Condensed Matter
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Electronic, structural, and magnetic properties of the half-metallic ferromagnetic quaternary Heusler compounds CoFeMnZ(Z=Al, Ga, Si, Ge)

2011

The quaternary intermetallic Heusler compounds CoFeMn$Z$ ($Z=\text{Al}$, Ga, Si, or Ge) with $1:1:1:1$ stoichiometry were predicted to exhibit half-metallic ferromagnetism by ab initio electronic structure calculations. The compounds were synthesized using an arc-melting technique and the crystal structures were analyzed using x-ray powder diffraction. The electronic properties were investigated using hard x-ray photoelectron spectroscopy. The low-temperature magnetic moments, as determined from magnetization measurements, follow the Slater-Pauling rule, confirming the proposed high spin polarizations. All compounds have high Curie temperatures, allowing for applications at room temperature…

Materials scienceCondensed matter physicsMagnetic momentIntermetallicAb initioElectronic structureCondensed Matter PhysicsElectronic Optical and Magnetic MaterialsCondensed Matter::Materials ScienceMagnetizationX-ray photoelectron spectroscopyFerromagnetismCondensed Matter::Strongly Correlated ElectronsPowder diffractionPhysical Review B
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Alloying experiments on heavy fermion compounds

1990

Abstract This paper is intended to demonstrate the usefulness of controlled alloying for the understanding of heavy-fermion physics: (1) Th-substitution for Ce in CeCu2Si2 emphasizes the dominating role of the dopant-induced strain fields in generating incoherent scattering and pair breaking, (2) replacement of Cu by Ni in Ce(Cu1-xNix)2Ge2 leads to phenomena which are interpreted as derived from a transition between local-moment and itinerant heavy-fermion magnetism, and (3) increasing Cu concentration in UCu4+xAl8-x is accompanied by an antiferromagnetic to nonmagnetic transition near xcr = 1.5 similar to what has been found before for several Ce-based systems. A heavy Fermi-liquid phase w…

Materials scienceCondensed matter physicsMagnetismHeavy fermionIncoherent scatterQuasiparticleAntiferromagnetismCondensed Matter::Strongly Correlated ElectronsCondensed Matter PhysicsElectronic Optical and Magnetic MaterialsCoherence (physics)
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Electrical detection of the spin reorientation transition in antiferromagnetic TmFeO3 thin films by spin Hall magnetoresistance

2021

$\mathrm{Tm}\mathrm{Fe}{\mathrm{O}}_{3}$ (TFO) is a canted antiferromagnet that undergoes a spin reorientation transition (SRT) with temperature between 82 and 94 K in single crystals. In this temperature region, the N\'eel vector continuously rotates from the crystallographic $c$ axis (below 82 K) to the $a$ axis (above 94 K). The SRT allows for a temperature control of distinct antiferromagnetic states without the need for a magnetic field, making it apt for applications working at terahertz frequencies. For device applications, thin films of TFO are required as well as an electrical technique for read-out of the magnetic state. Here, we demonstrate that orthorhombic TFO thin films can be…

Materials scienceCondensed matter physicsMagnetoresistance02 engineering and technologyAtmospheric temperature range021001 nanoscience & nanotechnology01 natural sciencesMagnetic fieldPulsed laser depositionCondensed Matter::Materials Science0103 physical sciencesAntiferromagnetismCondensed Matter::Strongly Correlated ElectronsOrthorhombic crystal systemThin film010306 general physics0210 nano-technologySpin (physics)Physical Review B
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Lattice phonon modes of the high-pressure phase CuCl-IV

1999

Raman spectra of isotopically pure CuCl samples ${(}^{63}\mathrm{CuCl}$ and ${}^{65}\mathrm{CuCl})$ were measured under hydrostatic pressure up to 14 GPa at low temperature $(5 \mathrm{K}).$ Up to six Raman modes were resolved for the binary BC8-analog phase CuCl-IV in the range from 4.1 to 14 GPa. The phonon dispersion relations of this phase were calculated within a rigid ion model. Based on this calculation an assignment for the observed Raman-active modes is proposed. The calculated pressure dependences of mode frequencies reproduce the experimental results. Raman spectra support the existence of the phase CuCl-IIa in a narrow pressure range from 3.3 to 4.1 GPa.

Materials scienceCondensed matter physicsPhononHydrostatic pressureMolecular physicsIonPressure rangesymbols.namesakeLattice (order)High pressureDispersion relationsymbolsCondensed Matter::Strongly Correlated ElectronsRaman spectroscopy
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Optimum Carrier Concentration in n-Type PbTe Thermoelectrics

2014

Taking La- and I-doped PbTe as an example, the current work shows the effects of optimizing the thermoelectric figure of merit, zT, by controlling the doping level. The high doping effectiveness allows the carrier concentration to be precisely designed and prepared to control the Fermi level. In addition to the Fermi energy tuning, La-doping modifies the conduction band, leading to an increase in the density of states effective mass that is confirmed by transport, infrared reflectance and hard X-ray photoelectron spectroscopy measurements. Taking such a band structure modification effect into account, the electrical transport properties can then be well-described by a self-consistent single…

Materials scienceCondensed matter physicsRenewable Energy Sustainability and the EnvironmentDopingFermi levelFermi energyAtmospheric temperature rangeThermoelectric materialsCondensed Matter::Materials Sciencesymbols.namesakeEffective mass (solid-state physics)symbolsDensity of statesCondensed Matter::Strongly Correlated ElectronsGeneral Materials ScienceElectronic band structureAdvanced Energy Materials
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Electronic cooling and hot electron effects in heavily doped silicon-on-insulator film

2004

The influence of carrier concentration in silicon-on-insulator film on the thermal characteristics of semiconductor and performance of the superconductor-semiconductor-superconductor micro-coolers have been investigated at sub kelvin temperatures. The overheating of the lattice in heavily doped silicon film must be taken into account in the analysis of electron-phonon coupling experiment and operation of the cooler device. The heat flow between electrons and phonons in heavily doped silicon films is found to be proportional to T6, which is in accordance with theoretical prediction for dirty limit. Increasing the doping level in the semiconductor considerably increases both the efficiency of…

Materials scienceCondensed matter physicsSiliconPhononbusiness.industrySchottky barrierDopingchemistry.chemical_elementConductanceElectronCondensed Matter PhysicsCondensed Matter::Mesoscopic Systems and Quantum Hall EffectAtomic and Molecular Physics and OpticsCondensed Matter::Materials ScienceSemiconductorchemistryCondensed Matter::SuperconductivityThermalCondensed Matter::Strongly Correlated ElectronsbusinessMathematical PhysicsPhysica Scripta
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