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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >The effect of thermal treatment, composition and substrate on the texture and magnetic properties of FeCo thin films
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The effect of thermal treatment, composition and substrate on the texture and magnetic properties of FeCo thin films

机译:热处理,成分和基材对FeCo薄膜的织构和磁性的影响

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Magnetostrictive FeCo films (thickness 300 nm) have been produced by RF magnetron sputter deposition. The effects of the substrate, composition and thermal treatment on the structural and magnetic properties of the films have been determined. Structural analysis was performed using transmission electron microscopy and x-ray diffraction. The magnetic properties, including magnetostriction, were determined by the magneto-optical Kerr effect, magnetic force microscopy and strain-modulated ferromagnetic resonance. It is found that the magnetic softness of the films is critically dependent on the texture and strain state of the film. With suitable choices of substrate, composition and thermal treatment, these parameters can be controlled, producing magnetically soft films while maintaining a high magnetostriction The differential response of the magnetic anisotropy to strain in these films is comparable to the best values achieved by more involved manufacturing processes, such as multilayering, showing excellent potential for their use in magnetic sensors and actuators. [References: 18]
机译:通过射频磁控溅射沉积已经制备了磁致伸缩FeCo膜(厚度300 nm)。已经确定了基材,组成和热处理对薄膜结构和磁性的影响。使用透射电子显微镜和X射线衍射进行结构分析。磁性能,包括磁致伸缩,由磁光克尔效应,磁力显微镜和应变调制铁磁共振确定。已经发现,膜的磁软度严格取决于膜的质地和应变状态。通过适当选择基材,成分和热处理,可以控制这些参数,从而在保持高磁致伸缩性的同时生产软磁性薄膜。这些薄膜中磁各向异性对应变的微分响应可与通过更复杂的制造工艺获得的最佳值相媲美。 ,例如多层,显示出将其用于磁性传感器和执行器的巨大潜力。 [参考:18]

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