Search results for " anisotropy"

showing 10 items of 295 documents

Very large magnetoresistance inFe0.28TaS2single crystals

2015

There is great interest in understanding the physics of magnetic ordering and electronic transport in materials of reduced dimensionality with strong spin-orbit coupling. This paper presents magnetotransport measurements of Fe${}_{0.28}$TaS${}_{2}$ single crystals, which are found to exhibit very large magnetoresistance (MR) for magnetic fields along the easy axis. The authors believe that such a large MR arises from spin disorder scattering and propose to use this mechanism as a design principle for materials with large MR. Further tests are needed to fully rule out contributions from a more conventional anisotropic MR mechanism.

PhysicsMagnetic anisotropyCondensed matter physicsMagnetoresistanceScatteringCondensed Matter PhysicsAnisotropyCoupling (probability)Electronic Optical and Magnetic MaterialsMagnetic fieldCurse of dimensionalitySpin-½Physical Review B
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Gd-based single-ion magnets with tunable magnetic anisotropy: Molecular design of spin qubits

2012

et al.

PhysicsMagnetic anisotropyPhysics and Astronomy (all)Condensed matter physicsPulsed EPRPolyoxometalateIsotropyGeneral Physics and AstronomyFigure of meritMoleculeQuantum tunnellingIon
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Spin-order dependent anomalous Hall effect and magneto-optical effect in the noncollinear antiferromagnets Mn3XN with X=Ga , Zn, Ag, or Ni

2019

The anomalous Hall effect (AHE) and the magneto-optical effect (MOE) are two prominent manifestations of time-reversal symmetry breaking in magnetic materials. Noncollinear antiferromagnets (AFMs) have recently attracted a lot of attention owing to the potential emergence of exotic spin orders on geometrically frustrated lattices, which can be characterized by corresponding spin chiralities. By performing first-principles density functional calculations together with group-theory analysis and tight-binding modeling, here we systematically study the spin-order dependent AHE and MOE in representative noncollinear AFMs ${\mathrm{Mn}}_{3}X\mathrm{N}\phantom{\rule{4pt}{0ex}}(X=\mathrm{Ga}$, Zn, …

PhysicsMagnetic anisotropySpintronicsCondensed matter physicsAntiferromagnetismOrder (ring theory)Point groupOmegaEnergy (signal processing)Spin-½Physical Review B
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Double Exchange in Orbitally Degenerate Mixed Valence Clusters: Magnetic Anisotropy, Vibronic Effects

2001

In this paper we consider the vibronic problem of the double exchange in mixed-valence dimers containing transition metal ions in orbitally degenerate ground states. The vibronic model includes interaction with the breathing local modes (Piepho-Krausz-Schatz-PKS) as well as the modulation of metal-metal distances as suggested by Piepho. The double exchange in orbitally degenerate systems is shown to produce strong magnetic anisotropy of orbital nature. PKS interaction is expected to suppress the magnetic anisotropy of the system, while the intercenter vibrations tend to enhance it. The roles of spin-orbit coupling and temperature are revealed for the systems with different geometries.

PhysicsMagnetic anisotropyValence (chemistry)Degenerate energy levelsCondensed Matter::Strongly Correlated ElectronsMolecular physicsTransition metal ions
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Accurate calculation of the transverse anisotropy of a magnetic domain wall in perpendicularly magnetized multilayers

2015

Bloch domain walls are the most common type of transition between two out-of-plane magnetized domains (one magnetized upwards, one downwards) in films with perpendicular magnetic anisotropy. The rotation of the spins of such domain walls in the plane of the film requires energy, which is described by an effective anisotropy, the so-called transverse or hard axis anisotropy ${K}_{\ensuremath{\perp}}$. This anisotropy and the related D\"oring mass density of the domain wall are key parameters of the one-dimensional model to describe the motion of magnetic domain walls. In particular, the critical field strength or current density where oscillatory domain wall motion sets in (Walker breakdown)…

PhysicsMagnetic domainSpin polarizationCondensed matter physics02 engineering and technologyType (model theory)021001 nanoscience & nanotechnologyCondensed Matter Physics01 natural sciencesElectronic Optical and Magnetic MaterialsMagnetic anisotropyDomain wall (magnetism)0103 physical sciencesddc:530010306 general physics0210 nano-technologyAnisotropyCritical fieldEnergy (signal processing)Physical Review B
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Experimental determination of single molecule toroic behaviour in a Dy8 single molecule magnet

2019

The enhancement of toroic motifs through coupling toroidal moments within molecular nanomagnets is a new, interesting and relevant approach for both fundamental research and potential quantum computation applications. We investigate a Dy8 molecular cluster and discover it has a antiferrotoroic ground state with slow magnetic relaxation. The experimental characterization of the magnetic anisotropy axes of each magnetic center and their exchange interactions represents a considerable challenge due to the non-magnetic nature of the toroidal motif. To overcome this and obtain access to the low energy states of Dy8 we establish a multi-orientation single-crystal micro Hall sensor magnetometry ap…

PhysicsMagnetometerUNESCO::QUÍMICA02 engineering and technologySpin structure010402 general chemistry021001 nanoscience & nanotechnology01 natural sciencesMolecular physics:QUÍMICA [UNESCO]0104 chemical scienceslaw.inventionIonCoupling (physics)Magnetic anisotropylawMoleculeGeneral Materials ScienceSingle-molecule magnet0210 nano-technologyGround state
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Publisher Correction: Stabilizing spin spirals and isolated skyrmions at low magnetic field exploiting vanishing magnetic anisotropy

2018

Skyrmions are topologically protected non-collinear magnetic structures. Their stability is ideally suited to carry information in, e.g., racetrack memories. The success of such a memory critically depends on the ability to stabilize and manipulate skyrmions at low magnetic fields. The non-collinear Dzyaloshinskii-Moriya interaction originating from spin-orbit coupling drives skyrmion formation. It competes with Heisenberg exchange and magnetic anisotropy favoring collinear states. Isolated skyrmions in ultra-thin films so far required magnetic fields as high as several Tesla. Here, we show that isolated skyrmions in a monolayer of Co/Ru(0001) can be stabilized down to vanishing fields. Eve…

PhysicsMultidisciplinaryCondensed matter physicsSciencePhysicsSkyrmionQGeneral Physics and Astronomy02 engineering and technologyGeneral Chemistry021001 nanoscience & nanotechnology01 natural sciencesPublisher CorrectionGeneral Biochemistry Genetics and Molecular BiologyMagnetic anisotropyLow magnetic field0103 physical sciencesComputingMethodologies_DOCUMENTANDTEXTPROCESSINGlcsh:Qddc:530lcsh:Science010306 general physics0210 nano-technologyGeneralLiterature_REFERENCE(e.g.dictionariesencyclopediasglossaries)Spin-½Nature Communications
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Neutron yields from a thick 13C target irradiated by 30 MeV protons

2002

Abstract Total neutron yields resulting from the proton bombardment of a thick 13 C target have been measured for 30 MeV protons. Absolute intensities, angular distributions and energy spectra of neutrons have been obtained by the time-of-flight technique where the detectors provided continuous coverage from 0° to 120°. Resonances have been found, some of which can be attributed to known states in 14 N. A total yield of 0.022(3) n/p was observed with a slight angular anisotropy towards forward angles. The measured yields are compared to the neutron yields produced by using deuterons on thick 12 C and 9 Be targets.

PhysicsNuclear and High Energy PhysicsProtonNuclear TheoryTotal neutronSpectral lineDeuteriumYield (chemistry)NeutronIrradiationAtomic physicsAngular anisotropyNuclear ExperimentInstrumentationNuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms
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Out-of-plane emission of nuclear matter in Au+Au collisions between 100 and 800 AMeV

1997

We present new experimental results concerning the azimuthal distributions of proton-likes, light and intermediate mass fragments at midrapidity for Au(100-800 AMeV)+Au collisions measured with the FOPI phase-I detector at GSI in Darmstadt. The azimuthal distributions are investigated as a function of the collision centrality, the incident energy, the fragment charge and transverse momentum. The azimuthal anisotropy is maximum for impact parameters around 7 fm. Intermediate mass fragments present a stronger out-of-plane emission signal than light fragments and a saturation is reached for Z greater than or equal to 4. The azimuthal anisotropy increases with the fragment transverse momentum a…

PhysicsNuclear reactionNuclear and High Energy PhysicsPhase (waves)Charge (physics)Nuclear matterAzimuthNuclear physicsNuclear Reactions; Au-197 (Au-197; X); E=100-800 MeV/nucleon; Azimuthal anisotropy; Out-of-plane emissionAtomic physicsNuclear ExperimentAnisotropySaturation (magnetic)Beam (structure)Nuclear Physics A
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Singlet-groundstate magnetism in TbP

1979

Elastic neutron scattering and magnetic susceptibility data are reported for temperatures around the Neel-point,TN=7.3 K, and for zero magnetic field. AboveTN, the temperature dependence of the magnetic central peak intensity can adequately be described within the RPA assuming isotropic exchange between nearest and next-nearest neighbours as the only parameters. This two-parameter model is quantitatively confirmed by the susceptibility data. AtTN, magnetic Bragg-intensities arise almost discontinuously (reaching 70% of the saturation within 0.1 K) accompanied by thermal hysteresis. For all temperatures belowTN the sublattice magnetic moment is explained by solutions of meanfield equations, …

PhysicsParamagnetismMagnetic anisotropyMagnetizationCondensed matter physicsNeutron magnetic momentMagnetismCondensed Matter PhysicsElectron magnetic dipole momentMagnetic susceptibilityMagnetic dipoleElectronic Optical and Magnetic MaterialsZeitschrift f�r Physik B Condensed Matter and Quanta
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