Search results for "colossal magnetoresistance"

showing 10 items of 15 documents

Magnetization and magnetoresistive response of LiMn2O4 near the charge ordering transition

2000

We report magnetization and magnetoresistance studies of the geometrically frustrated spinel compound LiMn2O4 near its charge ordering temperature. The effect of a 7 T magnetic field is to very slightly shift the transition in the resistivity to lower temperatures resulting in large negative magnetoresistance with significant hysteresis. This hysteresis is not reflected in the magnetization. These observations are compared with what is found in the colossal magnetoresistance and charge ordering perovskite manganese oxides. The manner in which geometric frustration influences the coupling of charge and spin degrees of freedom is examined.

Colossal magnetoresistanceCondensed matter physicsMagnetoresistanceChemistrymedia_common.quotation_subjectFrustrationGeneral ChemistryMagnetic susceptibilityCondensed Matter::Materials ScienceHysteresisMagnetizationCharge orderingMaterials ChemistryCondensed Matter::Strongly Correlated Electronsmedia_commonPerovskite (structure)Journal of Materials Chemistry
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Frequency and temperature dependence of the electrical conductivity of KTaO3; Li and PbTiO3; La, Cu: Indication of a low temperature polaron mechanism

2008

Abstract Recently, the concept of polarons has again been at the focus of solid-state research, as it can constitute the basis for understanding the high-temperature superconductivity or the colossal magnetoresistance of materials. More than a decade ago there were some indications that polarons play an important role in explaining low temperature maxima in imaginary part of the dielectric constant e ″ ( T ) in ABO3 perovskites. In the present work we report the ac electrical conductivities of KTaO3; Li and PbTiO3; La, Cu and their frequency and temperature dependence. The real part of the complex ac conductivity was found to follow the universal dielectric response σ ′ ∝ ν s . A detailed t…

Colossal magnetoresistanceMaterials science02 engineering and technologyDielectricPolaron01 natural sciencesTunnellingTunnel effectElectrical resistivity and conductivityTantalates0103 physical sciencesElectrical and Electronic Engineering010306 general physicsQuantum tunnellingLow-field transportSuperconductivityCondensed matter physicsPACS: 72.20.Fr; 73.40.Gk; 71.38.−k; 77.84.DyPolaronsDoping[CHIM.MATE]Chemical Sciences/Material chemistry021001 nanoscience & nanotechnologyCondensed Matter PhysicsElectronic Optical and Magnetic Materials[ CHIM.MATE ] Chemical Sciences/Material chemistry0210 nano-technologyTitanates
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Thermodynamic stability of non-stoichiometric SrFeO 3−δ : a hybrid DFT study

2019

SrFeO3-δ is mixed ionic-electronic conductor with complex magnetic structure which reveals also colossal magnetoresistance effect. This material and its solid solutions are attractive for various spintronic, catalytic and electrochemical applications, including cathodes for solid oxide fuel cells and permeation membranes. Its properties strongly depend on oxygen non-stoichiometry. Ab initio hybrid functional approach was applied here for a study of thermodynamic stability of a series of SrFeO3-δ compositions with several non-stoichiometries δ, ranging from 0 to 0.5 (SrFeO3 - SrFeO2.875 - SrFeO2.75 - SrFeO2.5) as the function of temperature and oxygen pressure. The results obtained by consid…

Colossal magnetoresistanceMaterials scienceAb initioOxideGeneral Physics and AstronomyThermodynamics02 engineering and technology010402 general chemistry021001 nanoscience & nanotechnology7. Clean energy01 natural sciences0104 chemical sciencesHybrid functionalchemistry.chemical_compoundchemistryPhase (matter):NATURAL SCIENCES:Physics [Research Subject Categories]Chemical stabilityPhysical and Theoretical Chemistry0210 nano-technologyPerovskite (structure)Phase diagramPhysical Chemistry Chemical Physics
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Conduction band polarization in some CMR materials

2000

First principles electronic structure calculations reveal certain important common features in the conduction band polarization of many of the newly examined colossal magnetoresistance (CMR) materials. Most CMR compounds seem to possess a localized, magnetic band slightly below the Fermi energy. This localized band transfers polarization to a relatively broad conduction band. The nature of the two bands in different systems can be quite distinct. In the perovskite-derived manganese oxides, the magnetic band is derived from $Mn t_{2g}$ states while the conduction band is derived from Mn e states. In the chalcospinel $Fe_{^0.^5}$ $Cu_{^0.^5}$ $Cr_{2}$$ S_{4}$ , the $Crt_{2g}$ states which are…

Colossal magnetoresistanceMaterials scienceCondensed matter physicsBand gapPyrochloreFermi energyElectronic structureengineering.materialPolarization (waves)SemimetalMetalvisual_artMaterials Chemistryvisual_art.visual_art_mediumengineeringInternational Journal of Inorganic Materials
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Thermodynamics of ABO3-Type Perovskite Surfaces

2011

The ABO3-type perovskite manganites, cobaltates, and ferrates (A= La, Sr, Ca; B=Mn, Co, Fe) are important functional materials which have numerous high-tech applications due to their outstanding magnetic and electrical properties, such as colossal magnetoresistance, half-metallic behavior, and composition-dependent metal-insulator transition (Coey et al., 1999; Haghiri-Gosnet & Renard, 2003). Owing to high electronic and ionic conductivities. these materials show also excellent electrochemical performance, thermal and chemical stability, as well as compatibility with widely used electrolyte based on yttrium-stabilized zirconia (YSZ). Therefore they are among the most promising materials as …

Colossal magnetoresistanceMaterials scienceThermodynamicsIonic bondingPrimitive cell02 engineering and technologyCrystal structure021001 nanoscience & nanotechnology01 natural sciences7. Clean energy0103 physical sciencesPhysical chemistryCubic zirconiaOrthorhombic crystal system010306 general physics0210 nano-technologyYttria-stabilized zirconiaPerovskite (structure)
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Crystal Structure and Transport Properties of Sr<sub>2</sub>FeMoO<sub>6</sub> Thin Films

2001

MagnetizationMaterials scienceColossal magnetoresistanceCondensed matter physicsMechanics of MaterialsHall effectMechanical EngineeringGeneral Materials ScienceDouble perovskiteCrystal structureThin filmCondensed Matter PhysicsPerovskite (structure)Materials Science Forum
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Pulsed laser deposition of Sr2FeMoO6 thin films

2005

Abstract The effect of various deposition conditions and after-growth protocols on the magnetic and transport properties of Sr 2 FeMoO 6 films has been explored. It is found that the saturation magnetization and the magnetoresistance (MR) are dominated by the degree of cationic order, and the strain effects are clearly evidenced in a lower T C . The after-growth annealing of the films and the deposition of a buffer layer has been found to relax the film strains. This translates into a clear increase of the measured low-field magnetoresistance ratios.

Materials scienceColossal magnetoresistanceCondensed matter physicsMagnetoresistanceAnnealing (metallurgy)Cationic polymerizationDouble perovskiteThin filmCondensed Matter PhysicsElectronic Optical and Magnetic MaterialsPulsed laser depositionJournal of Magnetism and Magnetic Materials
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High-temperature transport properties of La0.67Ca0.33MnO3 films

1999

Abstract The giant negative magnetoresistance in manganites has been investigated from the Curie temperature T c up to 600 K (2.6 T c ) in magnetic fields up to 8 T. Nonadiabatic small polaron hopping can successfully describe the temperature dependence of the resistivity. The magnetic field influence on the activation energy is explained by the interaction of unclustered ions with small spin clusters of four ions.

Materials scienceColossal magnetoresistanceCondensed matter physicsMagnetoresistanceGiant magnetoresistanceActivation energyCondensed Matter PhysicsPolaronElectronic Optical and Magnetic MaterialsMagnetic fieldCondensed Matter::Materials ScienceElectrical resistivity and conductivityCurie temperatureCondensed Matter::Strongly Correlated ElectronsJournal of Magnetism and Magnetic Materials
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Magnetic field dependent thermal conductance in La0.67Ca0.33MnO3

2015

Abstract Using the differential 3 ω technique we measured the low-temperature out-of-plane thermal conductance of heteroepitaxial thin film La0.67Ca0.33MnO3 (LCMO). The magnetic field dependence of the thermal conductance reached values of up to 23%. The effect was observed to be largest in the vicinity of the metal–insulator transition, since the enhancement in thermal conductance is triggered by the colossal magnetoresistance effect increasing the electronic contribution to the thermal conductance. The point of the maximal change was adjusted by post-annealing the samples in an oxygen atmosphere. Samples with a higher transition temperature and lower epitaxial strain displayed a lower mag…

Materials scienceColossal magnetoresistanceCondensed matter physicsPhononTransition temperatureCondensed Matter PhysicsElectronic Optical and Magnetic MaterialsMagnetic fieldCondensed Matter::Materials Sciencesymbols.namesakeThermal conductivityDensity of statessymbolsCondensed Matter::Strongly Correlated ElectronsThin filmRaman spectroscopyJournal of Magnetism and Magnetic Materials
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Spin polarized tunneling at room temperature in a Heusler compound-a non-oxide material with a large negative magnetoresistance effect in low magneti…

2003

Summary form only given. Materials which display large changes in resistivity in response to an applied magnetic field (magnetoresistance) are currently of great interest due to their potential for applications in magnetic sensors, magnetic random access memories, and spintronics-a new kind of electronics based on spin instead of charge. Although ferromagnetic manganites show colossal magnetoresistance (CMR) effects around their Curie temperature, the low field and nearly temperature independent magnetoresistance properties important for spintronics are found only at low temperatures. Guided by striking features in the electronic structure of several magnetic compounds, we prepared the Heus…

Materials scienceColossal magnetoresistanceCondensed matter physicsSpin polarizationSpintronicsMagnetoresistanceMagnetic semiconductorengineering.materialHeusler compoundCondensed Matter::Materials ScienceFerromagnetismengineeringCondensed Matter::Strongly Correlated ElectronsHalf-metalIEEE International Digest of Technical Papers on Magnetics Conference
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