Search results for "Elastic"

showing 10 items of 2162 documents

Resonant hyper-Raman scattering in semiconductors: Excitonic effects

1999

Abstract A theoretical model of resonant hyper-Raman scattering involving two incident photons of frequency ωL is developed. The model is valid for energies 2ℏωL around the absorption edge of the semiconductor, and takes into account Wannier excitons as intermediate states in the scattering process. Both deformation potential and Frohlich interaction are included in the model: It is found that Frohlich-mediated scattering is a dipole-allowed process, in contrast to one-phonon Raman scattering, where the Frohlich mechanism is dipole-forbidden. We have performed numerical calculations of the resonance profile (hyper-Raman cross-section versus 2ℏωL) and applied our model to materials with dipo…

PhysicsCondensed matter physicsPhonon scatteringScatteringScattering lengthMott scatteringInelastic scatteringCondensed Matter PhysicsElectronic Optical and Magnetic MaterialsResonant inelastic X-ray scatteringX-ray Raman scatteringPhysics::Atomic PhysicsScattering theoryElectrical and Electronic EngineeringPhysica B: Condensed Matter
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Spin Dynamics of the Half-Integer-Spin Quasi-One-Dimensional Heisenberg Antiferromagnet CsMnI3

1994

Magnetic excitations of CsMnI 3 , a quasi-one-dimensional Heisenberg antiferromagnet with S =5/2, have been measured by means of inelastic neutron scattering. Magnetic excitations in the low temperature phase are in good agreement with the predictions of the conventional linear spin-wave theory. In particular, in accordance with the linear spin-wave theory, we found three separate modes at Q =(0, 0, 1) instead of a threefold degenerate mode as seen in CsNiCl 3 ( S =1). It confirms that the spin dynamics of the integer spin value system are very different from those of the half-integer spin value system, even in their three-dimensionally ordered phase. Magnetic excitations in the intermediat…

PhysicsCondensed matter physicsSpin waveHeisenberg modelGeneral Physics and AstronomyAntiferromagnetismCondensed Matter::Strongly Correlated ElectronsHalf-integerInelastic scatteringNeutron scatteringInelastic neutron scatteringSpin-½Journal of the Physical Society of Japan
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Identification of Néel Vector Orientation in Antiferromagnetic Domains Switched by Currents in NiO/Pt Thin Films

2021

Understanding the electrical manipulation of the antiferromagnetic order is a crucial aspect to enable the design of antiferromagnetic devices working at THz frequencies. Focusing on collinear insulating antiferromagnetic $\mathrm{Ni}\mathrm{O}/\mathrm{Pt}$ thin films as a materials platform, we identify the crystallographic orientation of the domains that can be switched by currents and quantify the N\'eel-vector direction changes. We demonstrate electrical switching between different T domains by current pulses, finding that the N\'eel-vector orientation in these domains is along [$\ifmmode\pm\else\textpm\fi{}5$ $\ifmmode\pm\else\textpm\fi{}5$ 19], different compared to the bulk $⟨112⟩$ d…

PhysicsCondensed matter physicsSpintronicsGeneral Physics and AstronomyOrder (ring theory)02 engineering and technologyState (functional analysis)021001 nanoscience & nanotechnology01 natural sciencesOrientation (vector space)0103 physical sciencesAntiferromagnetismThin film010306 general physics0210 nano-technologyOrder of magnitudeMagnetoelastic couplingPhysical Review Applied
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Transmission of electrons through ferromagnetic material and applications to detection of electron spin polarization

1993

The salient features of the total low energy inelastic electron scattering cross section in transition metals are described by a constant term σ 0 plus a term σ d that is proportional to the number of unoccupied d-orbitals. This simple model predicts that low energy electrons transmitted through a ferromagnetic ultrathin film acquire a transport spin polarization a(x). Using the ratio σ 0 /σ d as the only adjustable parameter, the model predicts the enhancement of the spin polarization of the low energy cascade electrons as well as a(x) in reasonable agreement with the existing observations on Fe, Co and Ni. A detector for electron spin polarization P based on the spin dependent transmissio…

PhysicsCondensed matter physicsTransition metalSpin polarizationFerromagnetismScatteringGeneral Physics and AstronomyCondensed Matter::Strongly Correlated ElectronsElectronAtomic physicsInelastic scatteringPolarization (waves)Spin (physics)Annalen der Physik
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Fractional mechanical model for the dynamics of non-local continuum

2009

In this chapter, fractional calculus has been used to account for long-range interactions between material particles. Cohesive forces have been assumed decaying with inverse power law of the absolute distance that yields, as limiting case, an ordinary, fractional differential equation. It is shown that the proposed mathematical formulation is related to a discrete, point-spring model that includes non-local interactions by non-adjacent particles with linear springs with distance-decaying stiffness. Boundary conditions associated to the model coalesce with the well-known kinematic and static constraints and they do not run into divergent behavior. Dynamic analysis has been conducted and both…

PhysicsContinuum (measurement)Mathematical analysisStiffnessNatural frequencyKinematicsNon-local elasticity Fractional calculus modes of vibration and dynamics of non-local baricarNon localFractional calculusLinear continuummedicineBoundary value problemmedicine.symptomSettore ICAR/08 - Scienza Delle Costruzioni
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Spatial fluctuations of the chemical potential in case of nearly coherent transport along an ordered chain

1991

The Landauer-Buttiker approach is used to describe electron transport along a chain of scatterers which allow elastic as well as inelastic processes. The inelastic scattering takes place via side branches coupling the chain to electron reservoirs which serve as a heat bath. For small inelastic coupling of the scatterers to the heat bath strong interference effects lead to spatial fluctuations of the charge density. The corresponding oscillations of the chemical potential are discussed in view of phase-sensitive experiments measuring the four-probe resistance.

PhysicsCouplingElastic scatteringCondensed matter physicsOscillationCharge densityGeneral Materials ScienceElectronInelastic scatteringCondensed Matter PhysicsElectron transport chainTransfer matrixElectronic Optical and Magnetic MaterialsZeitschrift f�r Physik B Condensed Matter
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Charge and current distributions in elastic electron scattering by 1P shell nuclei

1974

The authors study the charge and magnetic form factors appearing in elastic electron scattering by 1p shell nuclei. The question that the form factors may be obtained from simple nuclear models by simply introducing a scaling factor has been examined using the j-j coupling, the L-S coupling and the intermediate coupling of Cohen-Kurath (CK) resulting from effective interactions. Results for /sup 6/Li, /sup 7 /Li, /sup 9/Be and /sup 13/C are given and the q/sup 2/ dependences of their form factors are compared in the three models and with experiment. The CK scheme gives similar results to the L-S coupling for /sup 6/Li and /sup 7/Li in agreement with experiment, whereas it is intermediate be…

PhysicsCouplingNuclear and High Energy PhysicsScatteringElastic electronFísicaParity (physics)Atomic physicsScale invarianceJ-couplingNuclear Physics
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A study of coupled-reaction channel effects in the36S +37Cl system, hybridization between single particle orbits

1996

Elastic and inelastic scattering as well as transfer transitions involving a valence proton in thesd- andfp- shell orbits are studied in the interaction of37Cl +36S at ECM=50 MeV. Experimental angular distributions of single particle states of37Cl (elastic and inelastic transfer) are presented with a CRC analysis. In the CRC calculations the effects of inelastic and transfer couplings are studied using known spectroscopic information. In the CRC analysis six single particle bound states and the collective 2+ excitation of36S are included in the coupling scheme. Higher order coupling effects are found to be important. A distinct effect, the mixing of single particle states (of different pari…

PhysicsCouplingNuclear and High Energy PhysicsValence (chemistry)Bound stateNuclear fusionParity (physics)Inelastic scatteringAtomic physicsNucleonExcitationZeitschrift für Physik A Hadrons and Nuclei
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Surface-Wave Coupling to Single Phononic Subwavelength Resonators

2017

International audience; We propose to achieve manipulation of mechanical vibrations at the micron scale by exploiting the interaction of individual, isolated mechanical resonators with surface acoustic waves. We experimentally investigate a sample consisting of cylindrical pillars individually grown by focused-ion-beam-induced deposition on a piezoelectric substrate, exhibiting different geometrical parameters and excited by a long-wavelength surface elastic wave. The mechanical displacement is strongly confined in the resonators, as shown by field maps obtained by laser scanning interferometry. A tenfold displacement field enhancement compared to the vibration at the surface is obtained, r…

PhysicsCouplingSurface (mathematics)[SPI.ACOU]Engineering Sciences [physics]/Acoustics [physics.class-ph][SPI.OTHER]Engineering Sciences [physics]/Other[PHYS.PHYS.PHYS-OPTICS]Physics [physics]/Physics [physics]/Optics [physics.optics]business.industryElastic energyGeneral Physics and Astronomy02 engineering and technology021001 nanoscience & nanotechnology01 natural sciences[SPI.MAT]Engineering Sciences [physics]/MaterialsVibrationResonatorOpticsSurface wave0103 physical sciences[SPI.NANO]Engineering Sciences [physics]/Micro and nanotechnologies/Microelectronics010306 general physics0210 nano-technologybusinessMicroscale chemistryPlasmon
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Travelling Panels Made of Viscoelastic Material

2013

In this chapter, our focus is to analyse the behaviour of moving panels using viscoelastic materials. As the reader will have noticed, all the models discussed in previous chapters have concerned the case of a purely elastic material. The deformation of an elastic material depends only on the applied forces; it has no explicit time dependence. Paper, however, is a more complicated material: it is viscoelastic. In addition to elastic properties, it has also time-dependent viscous properties, which cause the phenomena of creep and relaxation (see, e.g., Alava and Niskanen 2006). One of the simplest models for a viscoelastic solid is the Kelvin–Voigt model, which consists of a linear spring an…

PhysicsCreepDeformation (mechanics)Spring (device)Time derivativeMaterial derivativeRelaxation (physics)MechanicsViscoelasticityDashpot
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