Applied Physics Letters · 2007 · 93 citations · 21 references
EngineeringL 1Thin Film Process TechnologySio2 LayersGranular Fept FilmsThin Film ProcessingLow-temperature OrderingMaterials EngineeringMaterials ScienceCrystalline DefectsNanotechnologyGranular Fept–sio2 FilmsLayered MaterialSurface CharacterizationMaterial AnalysisNanomaterialsSurface ScienceApplied PhysicsUltrathin Sio2 LayersThin FilmsChemical Vapor Deposition
L 1 0 granular FePt–SiO2 films with a (001) preferred orientation and well-separated grains of 5.14nm were obtained by depositing atomic-scale Fe∕Pt∕SiO2 multilayers (MLs) on glass substrates and subsequently annealing MLs at a temperature of 350°C. Large out-of-plane coercivity of 7700Oe and a high ordering factor of 0.83 were achieved. Alternate atomic-scale depositions promoted the formation of (001) textures. Furthermore, because of the low surface energy of SiO2 layers, SiO2 tended to diffuse into grain boundaries of FePt during annealing, which may accelerate diffusion of Fe and Pt atoms, resulting in the low-temperature ordering.
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Reduction of ordering temperature of an FePt-ordered alloy by addition of Cu
Tomoyuki Maeda, Tadashi Kai, Akira Kikitsu et al. · Applied Physics Letters · 2002 · 362 citations