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Study of effects of annealing on nanostructured Co-C thin films by X-ray absorption spectroscopy
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Study of effects of annealing on nanostructured Co-C thin films by X-ray absorption spectroscopy

C.J. Sun, G.M. Chow, Y. Zhao, Y.K. HwuJ.P. Wang
Journal of Magnetism and Magnetic Materials, 卷.303(2 SPEC. ISS.)
2006

摘要

Extended X-ray absorption fine structure Magnetic recording Spin moment Thin films X-ray absorption fine structure Electronic Optical and Magnetic Materials Condensed Matter Physics
The long-range order and the extent of crystallization of nanostructured thin films may not be reliably obtained by conventional X-ray diffraction when the crystalline domain size is smaller than the X-ray coherent length. Here we report an investigation of the effects of annealing on Co-C thin films by X-ray absorption spectroscopy. The local atomic order of Co increased with increasing annealing temperature, resulting in the increase of coercivity and saturation magnetization. The Co-C films annealed at 400 °C dominated by hexagonal close-packed phase with optimized magnetic properties are a promising media candidate for high density magnetic recording. © 2006 Elsevier B.V. All rights reserved.

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