Search results for "Spin-½"

showing 10 items of 573 documents

Density of Phonon States in Superconducting FeSe as a Function of Temperature and Pressure

2010

The temperature and pressure dependence of the partial density of phonon states (phonon-DOS) of iron atoms in superconducting ${\text{Fe}}_{1.01}\text{Se}$ was studied by $^{57}\text{F}\text{e}$ nuclear inelastic scattering. The high-energy resolution allows for a detailed observation of spectral properties. A sharpening of the optical phonon modes and shift of all spectral features toward higher energies by $\ensuremath{\sim}4\mathrm{%}$ with decreasing temperature from 296 to 10 K was found. However, no detectable change at the tetragonal--orthorhombic phase transition around 100 K was observed. Application of a pressure of 6.7 GPa, connected with an increase in the superconducting temper…

PhysicsSuperconductivityPhase transitionMössbauer effectCondensed matter physicsPhononCondensed Matter - SuperconductivityResolution (electron density)FOS: Physical sciencesInelastic scatteringCondensed Matter PhysicsCoupling (probability)Electronic Optical and Magnetic MaterialsSuperconductivity (cond-mat.supr-con)Condensed Matter::SuperconductivityCondensed Matter::Strongly Correlated ElectronsAtomic physicsSpin-½
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Dynamics of surface enrichment: A theory based on the Kawasaki spin-exchange model in the presence of a wall

1991

A mean-field theory is developed for the description of the dynamics of surface enrichment in binary mixtures, where one component is favored by an impenetrable wall. Assuming a direct exchange (Kawasaki-type) model of interdiffusion, a layerwise molecular-field approximation is formulated in the framework of a lattice model. Also the corresponding continuum theory is considered, paying particular attention to the proper derivation of boundary conditions for the differential equation at the hard wall. As an application, we consider the explicit solutions of the derived equations in the case where nonlinear effects can be neglected, studying the approach of an initially flat (homogeneous) co…

PhysicsSurface (mathematics)Differential equationMathematical analysisThermodynamicsCondensed Matter PhysicsElectronic Optical and Magnetic MaterialsNonlinear systemWetting transitionGeneral Materials ScienceBoundary value problemContinuum hypothesisLattice model (physics)Spin-½Zeitschrift f�r Physik B Condensed Matter
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Breaking down the entireWboson spin observables from its decay

2015

We discuss the eight independent spin observables for the $W$ boson in terms of its vector and tensor polarizations and identify the angular distributions and asymmetries able to separate them in collider experiments. The results are applied to the study of polarized top quark decays and diboson resonances. These novel observables are of great value for disentangling new physics mechanisms in $W$ boson production.

PhysicsTop quarkParticle physics010308 nuclear & particles physicsPhysics beyond the Standard ModelFOS: Physical sciencesObservableScalar boson01 natural sciencesHigh Energy Physics - Experimentlaw.inventionNuclear physicsHigh Energy Physics - PhenomenologyHigh Energy Physics - Experiment (hep-ex)High Energy Physics - Phenomenology (hep-ph)law0103 physical sciencesHigh Energy Physics::ExperimentTensor010306 general physicsColliderSpin-½BosonPhysical Review D
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Measurement of spin correlation in ttbar production using a matrix element approach

2011

correlation, assuming that the spin of the top quark is either correlated with the spin of the anti-top quark as predicted by the standard model or is uncorrelated. For the first time we use a matrix-element-based approach to study ttbar spin correlation. We use {ttbar -> W+bW-bbar ->l+nubl-nub} final states produced in ppbar collisions at a center of mass energy sqrt(s)=1.96 TeV, where l denotes an electron or a muon. The data correspond to an integrated luminosity of 5.4 fb-1 and were collected with the dzero detector at the Fermilab Tevatron collider. The result agrees with the standard model prediction. We exclude the hypothesis that the spins of the ttbar are uncorrelated at the …

PhysicsTop quarkParticle physicsMuonLuminosity (scattering theory)010308 nuclear & particles physicsBar (music)Physics::Instrumentation and DetectorsHigh Energy Physics::PhenomenologyTevatronFOS: Physical sciencesGeneral Physics and Astronomy01 natural sciencesHigh Energy Physics - ExperimentStandard ModelNuclear physicsHigh Energy Physics - Experiment (hep-ex)0103 physical sciences[PHYS.HEXP]Physics [physics]/High Energy Physics - Experiment [hep-ex]High Energy Physics::ExperimentFermilab010306 general physicsSpin-½
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Drops of3Heatoms with good angular-momentum quantum numbers

2000

The stability of drops made of ${}^{3}\mathrm{He}$ atoms is studied by means of a Monte Carlo variational method using wave functions with good angular momentum quantum numbers. The number of constituents considered is in the range 34--40. It is found that the minimal bound drop requires 35 atoms (perhaps 34) and that the preferred wave function must have the maximum spin.

PhysicsTotal angular momentum quantum numberQuantum mechanicsQuantum Monte CarloAngular momentum couplingRotational transitionAtomic physicsWave functionSpin quantum numberSpin-½Azimuthal quantum numberPhysical Review B
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Insight Into The Spin-Vibronic Problem of a Mixed Valence Magnetic Molecular Cell for Quantum Cellular Automata.

2021

The effects of the vibronic coupling in quantum cellular automata (QCA) based on the square planar mixed valence (MV) molecular cells comprising four paramagnetic centers (spin cores) and two excess mobile electrons are analyzed in the important particular case when the Coulomb energy gap between the ground antipodal diagonal-type two-electron configurations and the excited side-type configurations considerably exceeds both the one-electron transfer parameter (strong U-limit) and the vibronic stabilization energy. Under such conditions the developed model involves the second-order double exchange, the Heisenberg-Dirac-Van Vleck (HDVV) exchange and the vibronic coupling of the excess electro…

PhysicsValence (chemistry)Exchange interactionElectronMolecular physicsAtomic and Molecular Physics and OpticsElectron transferVibronic couplingExcited statePhysical and Theoretical ChemistryFisicoquímicaQuantum cellular automatonSpin-½Chemphyschem : a European journal of chemical physics and physical chemistry
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Spinorial formulation of the GW-BSE equations and spin properties of excitons in two-dimensional transition metal dichalcogenides

2021

In many paradigmatic materials, such as transition metal dichalcogenides, the role played by the spin degrees of freedom is as important as the one played by the electron-electron interaction. Thus an accurate treatment of the two effects and of their interaction is necessary for an accurate and predictive study of the optical and electronic properties of these materials. Despite the fact that the GW-BSE approach correctly accounts for electronic correlations, the spin-orbit coupling effect is often neglected or treated perturbatively. Recently, spinorial formulations of GW-BSE have become available in different flavors in material-science codes. However, an accurate validation and comparis…

PhysicsWork (thermodynamics)Settore FIS/03ExcitonDegrees of freedom (physics and chemistry)02 engineering and technology021001 nanoscience & nanotechnologyCoupling (probability)01 natural sciencesPartícules (Física nuclear)Coupling effectTransition metalQuantum mechanics0103 physical sciencesmany-body perturbation theory non collinear spin spin-orbit coupling Hedin's equations GW BSE DFT MoS2 electronic properties optical properties010306 general physics0210 nano-technologyMaterialsMixing (physics)Spin-½
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Optimal control of an inhomogeneous spin ensemble coupled to a cavity

2018

We apply optimal control techniques to an inhomogeneous spin ensemble coupled to a cavity. A general procedure is proposed for designing the control strategies. We numerically show the extent to which optimal control fields robust against system uncertainties help enhancing the sensitivity of the detection process. The parameters of the numerical simulations are taken from recent Electron Spin Resonance experiments. The low and high cooperativity regimes are explored.

Physics[PHYS]Physics [physics]Quantum PhysicsProcess (computing)FOS: Physical sciencesCooperativity02 engineering and technology021001 nanoscience & nanotechnologyOptimal control01 natural scienceslaw.inventionlaw0103 physical sciencesSensitivity (control systems)Statistical physics010306 general physics0210 nano-technologyElectron paramagnetic resonanceQuantum Physics (quant-ph)Spin-½
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Specular reflection of spin-polarized electrons from the W(001) spin-filter crystal in a large range of scattering energies and angles

2015

Extending previous work on the imaging spin-filter technique based on electron diffraction from W(001) in the specular (00)-LEED (low-energy electron diffraction) spot, we studied the scattering-energy and angle-of-incidence landscape of spin sensitivity $S$ and reflectivity ${I/I}_{0}$. The setup includes a spin-polarized GaAs electron source and a rotatable delay-line detector for spatially resolving detection. We measured the intensity and spin asymmetry of the specularly reflected beam for energies between 14 and 37 eV and angles of incidence between ${30}^{\ensuremath{\circ}}$ and ${60}^{\ensuremath{\circ}}$. Resulting energy-angular landscapes show rather good agreement with theory [r…

Physicsbusiness.industryScatteringmedia_common.quotation_subjectElectronCondensed Matter PhysicsAsymmetryElectronic Optical and Magnetic MaterialsOpticsElectron diffractionSpecular reflectionDiffuse reflectionAtomic physicsbusinessIntensity (heat transfer)Spin-½media_commonPhysical Review B
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Neutron Stars with Submillisecond Periods: A Population of High‐Mass Objects?

1999

Fast spinning neutron stars, recycled in low mass binaries, may have accreted a substantial amount of mass. The available relativistic measurements of neutron star masses, all clustering around 1.4 M_sun, however refer mostly to slowly rotating neutron stars which accreted a tiny amount of mass during evolution in a massive binary system. We develop a semi-analytical model for studying the evolution of the spin period P of a magnetic neutron star as a function of the baryonic mass load M_{ac}; evolution is followed down to submillisecond periods and the magnetic field is allowed to decay significantly before the end of recycling. We use different equations of state and include rotational de…

Physicseducation.field_of_studyAstrophysics::High Energy Astrophysical PhenomenaAstrophysics (astro-ph)PopulationFOS: Physical sciencesMagnetosphereAstronomy and AstrophysicsAstrophysics::Cosmology and Extragalactic AstrophysicsAstrophysicsAstrophysicsBaryonNeutron starGravitational fieldSpace and Planetary ScienceAstrophysics::Solar and Stellar AstrophysicsAstrophysics::Earth and Planetary AstrophysicsBinary systemeducationLow MassAstrophysics::Galaxy AstrophysicsSpin-½The Astrophysical Journal
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