Physical Review Letters · 2016 · 33 citations · 7 references
Magnetic PropertiesEngineeringLow-dimensional MagnetismSpin TexturesMagnetic ResonanceGlass MaterialChemistryStrain MeasurementMagnetoelastic MaterialsSpin DynamicMagnetic MaterialsMagnetoresistanceMagnetismGlass TransitionQuantum MaterialsMagnetohydrodynamicsMaterials SciencePhysicsMagnetoelasticityOrbital Glass StateNoncollinear Ferrimagnetic OrderingMagnetic MaterialSpintronicsFerromagnetismNatural SciencesCondensed Matter PhysicsApplied PhysicsMagnetic PropertyDielectric Relaxation
Strain, magnetization, dielectric relaxation, and unpolarized and polarized neutron diffraction measurements were performed to study the magnetic and structural properties of spinel Co_{1-x}V_{2+x}O_{4}. The strain measurement indicates that, upon cooling, ΔL/L in the order of ∼10^{-4} starts increasing below T_{C}, becomes maximum at T_{max}, and then decreases and changes its sign at T^{*}. Neutron measurements indicate that a collinear ferrimagnetic order develops below T_{C} and upon further cooling noncollinear ferrimagnetic ordering occurs below T_{max}. At low temperatures, the dielectric constant exhibits a frequency dependence, indicating slow dynamics. These results indicate the existence of an orbital glassy state at low temperatures in this nearly metallic frustrated magnet.
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Yutaka Ueda, Naoki Fujiwara, Hiroshi Yaśuoka · Journal of the Physical Society of Japan · 1997 · 163 citations
Magnetic Properties, Engineering, Low-dimensional Magnetism +21